WO2017034030A1 - Stretching material, stretchable member, and garment product - Google Patents
Stretching material, stretchable member, and garment product Download PDFInfo
- Publication number
- WO2017034030A1 WO2017034030A1 PCT/JP2016/075069 JP2016075069W WO2017034030A1 WO 2017034030 A1 WO2017034030 A1 WO 2017034030A1 JP 2016075069 W JP2016075069 W JP 2016075069W WO 2017034030 A1 WO2017034030 A1 WO 2017034030A1
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- Prior art keywords
- stretchable
- skin layer
- layer
- core layer
- thickness
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Classifications
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- A—HUMAN NECESSITIES
- A41—WEARING APPAREL
- A41D—OUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
- A41D31/00—Materials specially adapted for outerwear
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B25/00—Layered products comprising a layer of natural or synthetic rubber
- B32B25/04—Layered products comprising a layer of natural or synthetic rubber comprising rubber as the main or only constituent of a layer, which is next to another layer of the same or of a different material
- B32B25/08—Layered products comprising a layer of natural or synthetic rubber comprising rubber as the main or only constituent of a layer, which is next to another layer of the same or of a different material of synthetic resin
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- A—HUMAN NECESSITIES
- A41—WEARING APPAREL
- A41D—OUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
- A41D31/00—Materials specially adapted for outerwear
- A41D31/02—Layered materials
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B25/00—Layered products comprising a layer of natural or synthetic rubber
- B32B25/14—Layered products comprising a layer of natural or synthetic rubber comprising synthetic rubber copolymers
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B38/00—Ancillary operations in connection with laminating processes
- B32B38/0012—Mechanical treatment, e.g. roughening, deforming, stretching
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B7/00—Layered products characterised by the relation between layers; Layered products characterised by the relative orientation of features between layers, or by the relative values of a measurable parameter between layers, i.e. products comprising layers having different physical, chemical or physicochemical properties; Layered products characterised by the interconnection of layers
- B32B7/02—Physical, chemical or physicochemical properties
- B32B7/022—Mechanical properties
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B38/00—Ancillary operations in connection with laminating processes
- B32B38/0012—Mechanical treatment, e.g. roughening, deforming, stretching
- B32B2038/0028—Stretching, elongating
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B2307/00—Properties of the layers or laminate
- B32B2307/50—Properties of the layers or laminate having particular mechanical properties
- B32B2307/54—Yield strength; Tensile strength
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B2437/00—Clothing
Definitions
- One aspect of the present invention relates to a stretchable material capable of forming an elastic web or an elastic film. Another aspect of the present invention relates to a stretchable member that can be suitably used as an elastic web or an elastic film. Another aspect of the present invention relates to a clothing product including an elastic material or an elastic member.
- Patent Document 1 discloses a multilayer elastomer laminate including an elastomer layer and an inelastic skin layer, and discloses that the multilayer elastomer laminate is used for clothing and the like.
- Elastic members such as elastic webs are required to have good bondability with other members when applied to clothing products.
- the stretchable member is required to have uniform stretch when stretched because stretchability of the stretchable portion may impair wearability and comfort during wearing. ing.
- the stretchable member when the stretchable member is applied to a clothing product that is in close contact with the skin, when the width of the stretchable portion when stretched becomes small, the tightening force is likely to act locally and comfortable when worn. There is a risk of damage.
- deformation due to repeated use is also a problem.
- clothing products for example, sanitary goods such as diapers
- elastic members such as elastic webs
- An elastic material includes a core layer including an elastomer, and at least one skin including a resin material having a tensile stress higher than that of the core layer in at least one direction and forming a microphase separation structure.
- a layer including an elastomer, and at least one skin including a resin material having a tensile stress higher than that of the core layer in at least one direction and forming a microphase separation structure.
- a stretchable member having an arbitrarily stretched portion can be obtained by stretching a portion of the stretchable material and plastically deforming a portion of the skin layer. Since the stretchable member includes the stretchable portion and the shape holding portion in which the layer structure of the stretchable material is maintained, the shape holding portion is sufficiently secured to the other member. Moreover, in such a side surface, since the skin layer contains a resin material that forms a microphase separation structure, the skin layer can be plastically deformed uniformly in the stretching direction. When the skin layer is uniformly plastically deformed, the formed stretchable portion is excellent in elongation uniformity during elongation.
- the elastic material according to one aspect may be provided with skin layers on both main surfaces of the core layer.
- the tensile stress on both main surfaces becomes more uniform, and when a stretchable portion is provided, warpage due to nonuniform shrinkage is prevented.
- the skin layers come into contact with each other when wound in a roll shape, and therefore between the elastic materials (for example, between the skin layer and the core layer wound on the skin layer). Is prevented, and the workability during unwinding and the storage stability of the stretchable material are improved.
- the resin material may contain a block copolymer.
- a block copolymer In such an elastic material, since the microphase separation structure can be easily formed by the block copolymer, the above-described effects can be obtained more remarkably.
- the thickness of the core layer may be equal to or greater than the thickness of the skin layer.
- the ratio T 2 / T 1 of the thickness T 2 of the skin layer to the thickness T 1 of the core layer may be 0.1 or more and 1.0 or less, and is 0.2 or more and 0.5 or less.
- the stretchable material in which the skin layer has a microphase separation structure necking at the time of elongation is more significantly suppressed by making the relationship between the thickness of the core layer and the skin layer as described above.
- the clothing product which is further excellent in the comfort at the time of wear can be provided.
- the stretchable material according to this aspect tends to have a more uniform elongation when stretched.
- the tensile stress at 300% elongation may be 110% or less of the tensile yield stress of the skin layer in at least one direction.
- the stretchable member has a stretchable part and a shape retaining part, if the tensile stress required for stretching is significantly greater than the tensile yield stress of the skin layer, the shape retaining part cannot be plastically deformed during stretching, and the original shape cannot be maintained repeatedly. May interfere with the use of
- the tensile stress at the time of 300% elongation is 110% or less of the tensile yield stress of the skin layer, the shape holding part can maintain the original shape even if it is stretched by about 200% which is practically useful.
- the joining property with the member is further improved, and repeated use is possible.
- the stretch material according to one aspect may have a shrinkage ratio in the width direction perpendicular to the stretch direction at the time of 200% stretch of 30% or less in at least one direction.
- the elastic member has an elastic part and a shape holding part
- the width of the shape holding part is maintained at a constant width, and the elastic part is narrowed according to the extension, but when the width of the elastic part becomes extremely narrow at the time of extension, The difference between the width of the shape holding portion and the width of the stretchable portion becomes large.
- the wearability may be reduced, or the tightening force may easily act locally, thereby impairing comfort during wearing.
- the shrinkage ratio in the width direction orthogonal to the stretch direction at the time of 200% elongation is 30% or less, the degree of narrowing of the stretchable portion at the time of elongation is sufficiently small, and the wearability And the comfort at the time of wear can fully be acquired.
- An elastic material includes a core layer including an elastomer, and at least one skin layer having a tensile yield stress lower than that of the core layer in at least one direction.
- the tensile stress at% elongation is 110% or less of the tensile yield stress of the skin layer, and the shrinkage ratio in the width direction perpendicular to the extension direction at 200% elongation is 30% or less.
- the tensile stress at 300% elongation of the stretchable material is 110% or less of the tensile yield stress of the skin layer. Since the shape can be maintained, the bondability with other members is improved, and repeated use is possible. Moreover, in such a side surface, since the shrinkage ratio in the width direction orthogonal to the stretching direction when the stretchable material is stretched 200% is 30% or less, the degree of narrowing (necking) of the stretchable portion when stretched Is sufficiently small to achieve excellent wearability and comfort when worn.
- the elastic material according to one aspect may be provided with skin layers on both main surfaces of the core layer.
- the expansion / contraction rate on each main surface side becomes uniform, and warpage at the time of contraction is prevented.
- the thickness of the core layer may be equal to or greater than the thickness of the skin layer.
- the ratio T 2 / T 1 of the thickness T 2 of the skin layer to the thickness T 1 of the core layer may be 0.1 or more and 1.0 or less, and is 0.2 or more and 0.5 or less.
- the stretchable material having the relationship between the tensile stress and the shrinkage rate described above necking at the time of elongation is further remarkably suppressed by making the relationship between the thickness of the core layer and the skin layer as described above.
- the clothing product which is further excellent in the comfort at the time of wear can be provided.
- the stretchable material according to this aspect tends to have a more uniform elongation when stretched.
- a stretchable member including a stretchable portion having a structure in which the skin layer of the stretchable material is plastically deformed and a shape holding portion in which the layered structure of the stretchable material is maintained.
- a stretchable member can be produced from the stretchable material described above, and good jointability with other members can be obtained in the shape holding portion.
- Another aspect of the present invention relates to a method for producing a stretchable member, comprising a step of stretching at least a portion of the stretchable material and plastically deforming at least a portion of the skin layer.
- a part of the skin layer may be plastically deformed to form a shape holding portion in which the layer structure of the stretchable material is maintained and a stretchable portion in which the skin layer is plastically deformed.
- Another aspect of the present invention relates to a clothing product including the stretchable member.
- An elastic material includes a core layer containing an elastomer and at least one skin layer having a higher 10% tensile stress than the core layer in at least one direction, and stretches in 300% in one direction. Then, when the stretchable part is formed by plastically deforming the skin layer, the stretchable part has a strain of 25% or less by stretching 160% and holding at 40 ° C. for 1 hour.
- a stretchable member having an arbitrarily stretchable portion can be obtained by stretching a part of the stretchable material and plastically deforming a part of the skin layer. And since the said elastic member is hard to produce distortion even when the expansion-contraction part is hold
- the stretchable member can include a stretchable portion and a shape holding portion that maintains the layer structure of the stretchable material.
- the stretchable part expands when worn and the shape holding part maintains its shape.
- stretch member is obtained by joining with another member in a shape holding part, and favorable joining property with another member is acquired.
- the elastic material according to one aspect may be provided with skin layers on both main surfaces of the core layer.
- the tensile stress on both main surfaces becomes more uniform, and when an expansion / contraction part is provided, warpage or the like due to non-uniform expansion / contraction is prevented.
- skin layers contact each other when rolled up in a roll shape, blocking between the elastic materials is prevented, and workability during unwinding and storage stability of the elastic material are good. Become.
- the thickness of the core layer may be equal to or greater than the thickness of the skin layer.
- the ratio T 2 / T 1 of the thickness T 2 of the skin layer to the thickness T 1 of the core layer may be 0.1 or more and 1.0 or less.
- the tensile stress at 300% elongation may be 110% or less of the tensile yield stress of the skin layer in at least one direction.
- the stretchable member has a stretchable part and a shape-retaining part, if the tensile stress required for elongation is significantly greater than the tensile yield stress of the skin layer, the skin layer of the shape-retaining part can be plastically deformed during stretching to maintain the original shape. In some cases, repeated use may be hindered. If the tensile stress at the time of 300% elongation is 110% or less of the tensile yield stress of the skin layer, the shape holding part can maintain the original shape even if the elongation is about 200% that is practically useful. Bondability with the member becomes even better, and good bondability is maintained even after repeated use.
- An elastic material includes a core layer containing an elastomer and at least one skin layer having a 10% tensile stress higher than the core layer in at least one direction, and the elastomer comprises a branched polymer. contains.
- a stretchable member having an arbitrarily stretchable portion can be obtained by stretching a part of the stretchable material and plastically deforming a part of the skin layer. And since the elastomer of the core layer contains a branched polymer, the stretchable member is less likely to be distorted even if the stretchable portion is held in an expanded state, and therefore has excellent fit when worn for a long time. Well maintained.
- the stretchable member can include a stretchable portion and a shape holding portion that maintains the layer structure of the stretchable material.
- the stretchable part expands when worn and the shape holding part maintains its shape.
- stretch member is obtained by joining with another member in a shape holding part, and favorable joining property with another member is acquired.
- the elastomer may further contain a linear polymer. Thereby, effects such as improvement of processability to the film are exhibited.
- the elastic material according to one aspect may be provided with skin layers on both main surfaces of the core layer.
- the tensile stress on both main surfaces becomes more uniform, and when an expansion / contraction part is provided, warpage or the like due to non-uniform expansion / contraction is prevented.
- skin layers contact each other when rolled up in a roll shape, blocking between the elastic materials is prevented, and workability during unwinding and storage stability of the elastic material are good. Become.
- the thickness of the core layer may be equal to or greater than the thickness of the skin layer.
- the ratio T 2 / T 1 of the thickness T 2 of the skin layer to the thickness T 1 of the core layer may be 0.1 or more and 1.0 or less.
- the tensile stress at 300% elongation may be 110% or less of the tensile yield stress of the skin layer in at least one direction.
- the stretchable member has a stretchable part and a shape-retaining part, if the tensile stress required for elongation is significantly greater than the tensile yield stress of the skin layer, the skin layer of the shape-retaining part can be plastically deformed during stretching to maintain the original shape. In some cases, repeated use may be hindered. If the tensile stress at the time of 300% elongation is 110% or less of the tensile yield stress of the skin layer, the shape holding part can maintain the original shape even if the elongation is about 200% that is practically useful. Bondability with the member becomes even better, and good bondability is maintained even after repeated use.
- a stretchable member including a stretchable portion having a structure in which the skin layer of the stretchable material is plastically deformed and a shape holding portion in which the layered structure of the stretchable material is maintained.
- Such an elastic member sufficiently maintains the elasticity of the expansion / contraction part even after repeated use, and therefore, when applied to a clothing product, the fit at the time of wearing is sufficiently maintained.
- Another aspect of the present invention relates to a method for producing a stretchable member, comprising a step of stretching at least a portion of the stretchable material and plastically deforming at least a portion of the skin layer.
- a part of the skin layer may be plastically deformed to form a shape holding portion in which the layer structure of the stretchable material is maintained and a stretchable portion in which the skin layer is plastically deformed.
- Another aspect of the present invention relates to a clothing product including the stretchable material or the stretchable member.
- a stretchable member having a stretchable portion with excellent uniformity of elongation when stretched.
- an extensible member that is sufficiently prevented from being deformed by extension and can be used repeatedly.
- action of a clamping force is prevented and the elastic member which can implement
- an elastic material for producing the above-described elastic member a method for producing the elastic member, and a clothing product including the elastic member are provided.
- an elastic member that can sufficiently maintain good fit even when worn for a long time when applied to clothing products and the like.
- a stretchable member capable of obtaining good bondability with other members when applied to clothing products and the like.
- an elastic material for producing the above-described elastic member and a method for manufacturing the elastic member are provided.
- a clothing product comprising the above-described stretchable material or stretchable member is provided.
- FIG. 1 is a plan view showing an embodiment of an elastic material.
- FIG. 2 is an enlarged sectional view taken along line II-II in FIG.
- FIG. 3A and FIG. 3B are diagrams for explaining one aspect of the stretching process of the elastic material.
- FIG. 4 is a plan view showing an aspect of the stretchable member.
- FIG. 5 is a diagram showing the relationship between the stretch rate of the stretchable material and the stretchable member and the tensile stress.
- FIG. 6 is a plan view showing an aspect of the stretchable material.
- FIG. 7 is an enlarged cross-sectional view showing a cross section taken along line II-II in FIG. Fig.8 (a) and FIG.8 (b) are the figures for demonstrating the one aspect
- FIG. 9 is a plan view showing one embodiment of the stretchable member.
- FIG. 10A, FIG. 10B, and FIG. 10C are diagrams for explaining the extension test of the stretchable part.
- FIG. 11 is a diagram illustrating an example of the relationship between the elongation rate of the stretchable material and the stretchable member and the tensile stress.
- the elastic material according to the present embodiment includes a core layer containing an elastomer and a skin layer having a tensile yield stress lower than that of the core layer in at least one direction.
- the stretchable material can form a stretchable member having a stretchable portion by plastically deforming at least a part of the skin layer by a stretching process.
- a stretchable member In forming the stretchable member, only a part of the skin layer may be plastically deformed to provide a portion (shape holding portion) in which the layer structure of the stretchable material is maintained.
- the stretchable member having the shape holding portion ensures good bondability with other members in the shape holding portion.
- the stretchable material may have a layer structure (skin layer / core layer / skin layer) in which skin layers are laminated on both main surfaces of the core layer.
- a stretchable material the tensile stress on both main surfaces becomes more uniform, and when a stretchable portion is provided, warpage due to nonuniform shrinkage is prevented.
- the skin layers come into contact with each other when wound in a roll shape, and therefore between the elastic materials (for example, between the skin layer and the core layer wound on the skin layer). Is prevented, and the workability during unwinding and the storage stability of the stretchable material are improved.
- the layer structure of the elastic material is not limited to this.
- the elastic material may have a layer structure (core layer / skin layer) in which a skin layer is laminated only on one side of the core layer.
- You may have the layer structure (core layer / skin layer / core layer) by which the core layer was each laminated
- the core layer and the skin layer may be directly bonded, or may be indirectly bonded via an intermediate layer.
- the intermediate layer may be, for example, an adhesive layer that joins a modification layer containing a coloring material, a core layer, and a skin layer.
- the bonding mode of the core layer and the skin layer is not particularly limited.
- the resin materials constituting the core layer and the skin layer may be fused to each other and bonded by an adhesive layer interposed between the core layer and the skin layer. It may be.
- the thickness T 1 of the core layer may be a thickness T 2 or more skin layers.
- narrowing (necking) of the stretchable portion at the time of extension is more significantly suppressed. That is, in the stretchable member obtained from such a stretchable material, necking at the time of extension is reduced, so that local action of the tightening force is prevented, and excellent comfort when worn can be realized.
- necking is more significantly suppressed and the comfort during wearing is further improved by making the relationship between the thickness of the core layer and the skin layer as described above. .
- extension to become more uniform.
- the ratio T 2 / T 1 of the thickness T 2 of the skin layer to the thickness T 1 of the core layer may be 0.1 to 1.0, a 0.2 to 0.5 It's okay.
- the clothing product which is further excellent in the comfort at the time of wear can be provided.
- the skin layer has a microphase separation structure to be described later, necking is more significantly suppressed and the comfort during wearing is further improved by making the relationship between the thickness of the core layer and the skin layer as described above. .
- the thickness T 2 of the skin layer exhibits a total thickness of each skin layer.
- the thickness T 1 of the core layer exhibits a total thickness of each core layer.
- the elastic material may have a tensile stress at 300% elongation in at least one direction of 110% or less of the tensile yield stress of the skin layer in the same direction.
- the stretchable member has a stretchable part and a shape retaining part, if the tensile stress required for stretching is significantly greater than the tensile yield stress of the skin layer, the shape retaining part cannot be plastically deformed during stretching, and the original shape cannot be maintained repeatedly. May interfere with the use of If the tensile stress at the time of 300% elongation does not greatly exceed the tensile yield stress of the skin layer, the shape holding part can maintain the original shape even if the practically useful elongation of about 200% is performed.
- a stretchable portion may be formed by stretching in a direction in which the tensile stress at 300% elongation and the tensile yield stress of the skin layer satisfy the above relationship.
- extension of an elastic material is based on JISK7127, and is measured with the test piece width of 25 mm, the chuck
- the stretchable material has a plurality of skin layers
- the maximum tensile yield stress of each skin layer is referred to as “tensile yield stress of skin layer”.
- the tensile yield stress of the skin layer may be measured by peeling only the skin layer from the elastic material, and may be measured using a test piece equivalent to the skin layer.
- the yield point at which all skin layers are plastically deformed can be regarded as the tensile yield stress of the skin layers.
- the shrinkage ratio in the width direction orthogonal to the stretch direction is 30%. Or less, preferably 25% or less, more preferably 20% or less, still more preferably 15% or less, and even more preferably 10% or less.
- the elastic member has the expansion / contraction part and the shape holding part, the width of the shape holding part is maintained at a constant width, and the expansion / contraction part is narrowed according to the extension.
- the width of the expansion / contraction part becomes extremely narrow at the time of extension, the difference between the width of the shape holding part and the width of the expansion / contraction part becomes large.
- the wearability may be reduced, or the tightening force may easily act locally, thereby impairing comfort during wearing.
- the degree of shrinkage in the width direction perpendicular to the stretched direction when stretched 200% is 30% or less, and the degree of narrowing of the stretchable portion when stretched is sufficiently small. The comfort of the time can be sufficiently secured.
- the stretchable portion may be formed by stretching in a direction in which the shrinkage rate falls within the above range.
- the shrinkage rate in the width direction orthogonal to the stretching direction at the time of 200% stretching is a value measured by the following method.
- a rectangular test piece width 50 mm, length 50 mm or more
- the both ends in the extending direction of the test piece are sandwiched so that the length of the extending portion is 50 mm, and extended by 200% in the extending direction.
- the shrinkage rate (%) is calculated by (L2 / L1) ⁇ 100.
- the elastic material according to this embodiment includes a core layer containing an elastomer.
- a core layer is a layer which bears the elastic function of an elastic member, The composition etc. may be selected so that it may have desired rubber elasticity.
- the elastomer contained in the core layer is a material having rubber elasticity, and the core layer has a 10% tensile stress lower than that of the skin layer.
- the 10% tensile stress is also called 10% Modulus, and is a force per unit area necessary for 10% elongation, and is measured according to JIS K 6251.
- the 10% tensile stress of the core layer may be, for example, 0.5 MPa or less, 0.3 MPa or less, or 0.1 MPa or less. Thereby, since it stretches following small stress, the elastic member excellent in handleability is obtained.
- the core layer may have a 10% tensile stress in the above range in at least one direction.
- the core layer may have a 10% tensile stress in the above range in the stretching direction of the elastic material.
- the 300% tensile stress of the core layer may be 4 MPa or less, for example, or 2 MPa or less. Thereby, since it stretches following small stress, the elastic member excellent in handleability is obtained.
- the 300% tensile stress of the core layer may be, for example, 1 MPa or more, and preferably 1.5 MPa or more. Thereby, extending without limit is suppressed.
- the core layer may have 300% tensile stress in the above range in at least one direction.
- the core layer may have a 300% tensile stress in the above range in the stretching direction of the stretchable material.
- the core layer thickness T 1 may be, for example, 10 ⁇ m or more, and is preferably 15 ⁇ m or more. Further, the thickness T 1 of the core layer may be, for example, 100 ⁇ m or less, 50 ⁇ m or less, or 35 ⁇ m or less from the viewpoint of reducing the material cost while obtaining a sufficient effect.
- the core layer may be made of a resin material containing an elastomer (hereinafter also referred to as “resin material (A)”).
- resin material (A) elastomer
- the type of elastomer is not particularly limited.
- SIS styrene-isoprene-styrene block copolymer
- SBS styrene-butadiene-styrene block copolymer
- SEBS styrene-ethylene / butylene-styrene block copolymer
- polyurethane ethylene copolymer
- examples thereof include ethylene vinyl acetate, ethylene-propylene copolymer, ethylene-propylene-diene terpolymer, and propylene oxide (PO).
- the resin material (A) constituting the core layer may contain components other than those described above.
- the resin material (A) includes a stiffening agent (eg, polyvinyl styrene, polystyrene, poly ⁇ -methyl styrene, polyester, epoxy resin, polyolefin, coumarone-indene resin), a viscosity reducing agent, a plasticizer, a tackifier ( For example, aliphatic hydrocarbon tackifier, aromatic hydrocarbon tackifier, terpene resin tackifier, hydrogenated terpene resin tackifier), dye, pigment, antioxidant, antistatic agent, adhesive, tack An inhibitor, slip agent, heat stabilizer, light stabilizer, foaming agent, glass bubble, starch, metal salt, microfiber, and the like may be included.
- a stiffening agent eg, polyvinyl styrene, polystyrene, poly ⁇ -methyl styrene, polyester, epoxy resin
- the elastic material according to the present embodiment includes a skin layer having a 10% tensile stress higher than that of the core layer in at least one direction.
- the skin layer has a function of protecting the core layer in the stretchable material, and is plastically deformed by a stretching process when the stretchable member is manufactured. At this time, the core layer is elastically deformed, and only the skin layer is plastically deformed, so that the stretched portion can be used as the stretchable portion of the stretchable member.
- the skin layer may have a function of maintaining the shape of the shape holding portion in the stretchable member.
- the 10% tensile stress of the skin layer may be 1 MPa or more, for example, or 2 MPa or more. Thereby, it does not deform
- the skin layer may have a 10% tensile stress in the above range in at least one direction. The skin layer may have a 10% tensile stress in the above range in the stretching direction of the elastic material. In this embodiment, the 10% tensile stress of the skin layer is measured according to JIS K 6251.
- the tensile yield stress of the skin layer may be, for example, 2 N / 25 mm or more, preferably 2.5 N / 25 mm or more, more preferably 3 N / 25 mm or more. Further, the tensile yield stress of the skin layer may be, for example, 10 N / 25 mm or less, and preferably 7 N / 25 mm or less.
- the skin layer may have a tensile yield stress in the above range in at least one direction. Moreover, the skin layer may have the tensile yield stress of the said range in the extending
- the tensile yield stress of the skin layer is measured in accordance with JIS K 7127 at a test piece width of 25 mm, a chuck interval of 50 mm, and a test speed of 300 mm / min.
- the tensile yield strain of the skin layer may be, for example, 20% or less, and preferably 15% or less.
- the skin layer may have a tensile yield strain in the above range in at least one direction.
- the skin layer may have a tensile yield strain in the above range in the stretching direction of the elastic material.
- the tensile yield strain of the skin layer is measured according to JIS K 7127 at a test piece width of 25 mm, a chuck interval of 50 mm, and a test speed of 300 mm / min.
- the thickness T 2 of the skin layer may be, for example, 2 ⁇ m or more, and preferably 5 ⁇ m or more from the viewpoints that the above-described preferable tensile properties can be easily obtained and that the production becomes easy.
- the thickness T 2 of the skin layers, from the viewpoint of reducing material cost while obtaining a sufficient effect may be for example 30 ⁇ m or less and preferably 20 ⁇ m or less.
- the resin material constituting the skin layer may form a microphase separation structure.
- resin material (B) may form a microphase separation structure.
- a phase structure that is easily plastically deformed is densely distributed throughout the skin layer, it can be uniformly plastically deformed by a stretching process. Thereby, the stretchable part formed becomes excellent in the uniformity of elongation at the time of extension. Further, since the skin layer has a micro phase separation structure, necking at the time of extension is more remarkably suppressed, and an elastic member that is further excellent in comfort at the time of wearing is realized.
- the elongation becomes uniform even at a relatively low degree of stretching such as 100% stretching, and therefore any stretching such as 100%, 150%, 200%, 250%, 300%, etc.
- the stretchable material can be stretched at a degree. Note that when the degree of stretching at the time of the stretching process is different, mechanical properties such as elasticity and tensile stress of the formed stretchable part are changed. That is, in this aspect, the stretchable part having different characteristics can be formed from the same stretchable material by changing the stretching degree during the stretching process. For this reason, for example, even when the required characteristics differ depending on the part of the clothing product, the same stretchable material can be applied to each part by adjusting the degree of stretching according to the desired characteristic.
- the microphase separation structure formed by the resin material (B) may be, for example, a lamellar structure, a gyroid structure, a cylinder structure, a BCC structure, or the like.
- the microphase-separated structure may be formed by a block copolymer, for example, or may be formed by a polymer blend.
- Resin material (B) may contain a block copolymer.
- the block copolymer is preferably a block copolymer that forms a microphase-separated structure.
- Examples of the block copolymer include those containing, as elements, olefins such as ethylene, propylene, and butylene, esters such as ethylene terephthalate, and styrenes such as styrene.
- Resin material (B) may form a microphase separation structure by a polymer blend containing two or more kinds of polymers.
- the polymer contained in the resin material (B) include polypropylene, polyethylene, polybutylene, polyethylene terephthalate, and polystyrene.
- Resin material (B) may contain components other than the above.
- mineral oil extenders, antistatic agents, pigments, dyes, antiblocking agents, starches, metal salts, stabilizers and the like may be included.
- the manufacturing method of the stretchable material according to the present embodiment is not particularly limited, and for example, a general multilayer film forming technique using a resin material can be applied.
- the core layer and the skin layer are integrally formed by simultaneous extrusion molding of the resin material (A) constituting the core layer and the resin material (B) constituting the skin layer. It may be.
- the conditions for the coextrusion molding may be appropriately adjusted according to the composition of the resin material (A) and the resin material (B).
- the stretchable material according to the present embodiment may be manufactured by molding and laminating the A layer containing the resin material (A) and the B layer containing the resin material (B), respectively.
- the stretchable member according to the present embodiment includes a stretchable portion (also referred to as an activation portion) having a structure in which the skin layer of the stretchable material is plastically deformed.
- the stretchable member according to the present embodiment may further include a shape holding portion (also referred to as an unactivated portion) in which the layer structure of the stretchable material is maintained.
- the stretchable member according to the present embodiment can be suitably used as an elastic web applied to clothing products and the like because the stretchable portion functions as a rubber elastic body.
- the stretchable member according to the present embodiment can be bonded to another member in the shape holding portion, thereby obtaining good bondability with the other member.
- the stretchable member has an uneven elongation when stretched, the wearability and the comfort when worn may be impaired. Since the stretchable member according to this embodiment is formed from the above-described stretchable material, it can be excellent in the uniformity of elongation of the stretchable portion.
- the stretchable member when the stretchable member is applied to a clothing product that is in close contact with the skin, if the width of the stretchable portion when stretched becomes small, the tightening force tends to act locally, which may impair the comfort when worn. is there. Since the stretchable member according to the present embodiment is formed from the above-described stretchable material, the degree of narrowing of the stretchable portion at the time of extension is sufficiently small, and the wearability and comfort at the time of wearing can be sufficiently ensured. .
- the stretchable member according to the present embodiment is formed from the above-described stretchable material, the shape holding portion can maintain the original shape even after repeated use, and good bondability with other members can be maintained.
- the stretchable part has a structure in which the skin layer of the stretchable material is plastically deformed.
- the stretchable part may include a core layer and a plastically deformed skin layer.
- the plastically deformed skin layer may exist as a continuous layer, or may be divided by stretching.
- the shape holding part has a layer structure of stretchable material. That is, the shape holding part may include a core layer and a skin layer. It can also be said that the shape holding portion is an unstretched portion of the stretchable material.
- the stretchable member is manufactured by subjecting the stretchable material to a stretching process according to the intended use.
- the use of the elastic member is not particularly limited, and may be used for clothing, for example. More specifically, the elastic member may be, for example, a disposable diaper, an adult incontinence pad, a shower cap, a surgical gown, a hat and booth, a disposable pajamas, a competition shoulder, a clean room garment, a hat head hand or a visor. Etc., and used for an ankle band (for example, a panties cows protector), a wrist band, a rubber pan, a wet suit and the like.
- an ankle band for example, a panties cows protector
- the method for producing an elastic member includes a step of stretching at least a part of the elastic material and plastically deforming at least a part of the skin layer (also referred to as a step of activating at least a part of the elastic material). It's okay.
- the stretchable part is formed by stretching the stretchable material until the skin layer is plastically deformed. Plastic deformation is generally achieved by stretching beyond the tensile yield strain of the skin layer.
- the stretchable portion and the shape retaining portion may be formed by plastically deforming only a part of the skin layer.
- the stretching method of the stretch material is not particularly limited. For example, by sandwiching and stretching both ends of the stretchable material with a predetermined width, two shape holding portions with a predetermined width (unstretched portions sandwiched) and a stretchable portion formed between the shape holding portions, The elastic member provided is formed.
- the temperature condition during stretching of the elastic material is not particularly limited and may be room temperature.
- the stretch ratio of the stretchable material only needs to be equal to or higher than the tensile yield strain of the skin layer, and may be equal to or higher than the stretch ratio practically assumed. Further, as described above, since the mechanical properties of the stretchable part can be changed depending on the stretch ratio, the stretch ratio may be set according to desired characteristics.
- FIG. 1 is a plan view showing an aspect of the elastic material according to the present embodiment
- FIG. 2 is an enlarged cross-sectional view taken along line II-II in FIG.
- the stretchable material 10 includes a core layer 1 and a skin layer 2 a and a skin layer 2 b provided on both main surfaces of the core layer 1.
- the thickness T 1 of the core layer 1 is equal to or greater than the total thickness T 2 of the skin layer 2 a and the skin layer 2 b, and the total thickness T 2 of the skin layer 2 a and the skin layer 2 b with respect to the thickness T 1 of the core layer 1.
- the ratio T 2 / T 1 is 0.1 or more and 1.0 or less.
- both the skin layer 2a and the skin layer 2b are configured to include a resin material that forms a microphase separation structure.
- the skin layer 2a and the skin layer 2b can be uniformly plastically deformed by a stretching process because the phase structure that is easily plastically deformed is densely distributed throughout the skin layer. For this reason, the expansion-contraction part formed from the expansion-contraction material 10 becomes the thing excellent in the elongation uniformity at the time of expansion
- the stretchable material 10 has a substantially rectangular shape in a plan view, and functions as a stretchable member by being stretched in the longitudinal direction.
- the resin materials constituting the skin layer 2a and the skin layer 2b have substantially the same composition.
- the tensile yield stress in the longitudinal direction of the skin layer 2a and the skin layer 2b is substantially the same.
- the tensile stress at 300% elongation in the longitudinal direction of the stretchable material 10 is 110% or less of the tensile yield stress of the skin layer 2a and the tensile yield stress of the skin layer 2b.
- 3 (a) and 3 (b) are diagrams for explaining one aspect of the stretch treatment of the stretchable material.
- the elastic material 10 is clamped by the rectangular holding members in the region 3a at the center in the longitudinal direction of the elastic material 10 and the terminal region 3b and the region 3c, the region 3a is fixed, and the region 3b and the region 3c are fixed.
- the region 3a and the region 3b and the region 3a and the region 3c are stretched.
- FIG. 3B shows the state of the stretchable material at the time of stretching, and the shape holding portions 4a, 4b, and 4c corresponding to the regions 3a, 3b, and 3c sandwiched by the sandwiching members maintain the form of the stretchable material 10.
- the stretchable material 10 is stretched, and the skin layer of the stretchable material 10 is plastically deformed.
- the stretchable material 10 has a shrinkage ratio in the width direction orthogonal to the longitudinal direction of 30% or less when stretched by 200% in the longitudinal direction.
- the “shrinkage ratio” is the ratio (L2 ⁇ L1) / L2 of the width contracted by expansion (the value obtained by subtracting the minimum width during expansion from the width before expansion (L2 ⁇ L1)) to the width L2 before expansion.
- “At 200% extension” indicates that the length L4 at the time of extension is 200% with respect to the initial length L3 of the part to be extended.
- FIG. 4 is a plan view showing an aspect of the stretchable member according to the present embodiment.
- the elastic member 20 includes a shape holding part 14 in which the layer structure of the elastic material 10 is maintained, and an elastic part 15 formed between the shape holding parts 14.
- the stretchable portion 15 expands, and the shape holding portion 14 retains its shape. For this reason, in the elastic member 20, good adhesion to other members can be obtained by joining the other members with the shape holding portion 14.
- FIG. 5 is a diagram showing the relationship between the stretch rate and the tensile stress of the stretchable material and the stretchable member according to one embodiment.
- a line 51 indicates the relationship between the stretch rate of the stretchable material and the tensile stress.
- a line 52 indicates the relationship between the expansion rate and the tensile stress when the elastic member formed by extending the elastic material by 300% is extended. 5 corresponds to the tensile yield point of the skin layer, and the tensile stress at the point 53 corresponds to the tensile yield stress of the skin layer.
- a point 54 in FIG. 5 is a point when the stretchable material is stretched by 300%, and the tensile stress at the point 54 may be 110% or less of the tensile stress at the point 53.
- the elastic material according to the present embodiment includes a core layer containing an elastomer and a skin layer having a higher 10% tensile stress than the core layer in at least one direction.
- the stretchable material can form a stretchable member having a stretchable portion by plastically deforming at least a part of the skin layer by a stretching process.
- a stretchable member In forming the stretchable member, only a part of the skin layer may be plastically deformed to provide a portion (shape holding portion) in which the layer structure of the stretchable material is maintained.
- the stretchable member having the shape holding part can ensure good bondability with other members in the shape holding part.
- the stretchable material may have a layer structure (skin layer / core layer / skin layer) in which skin layers are laminated on both main surfaces of the core layer.
- a stretchable material the tensile stress on both main surfaces becomes more uniform, and when a stretchable portion is provided, warpage due to nonuniform shrinkage is prevented.
- the skin layers come into contact with each other when wound in a roll shape, and therefore between the elastic materials (for example, between the skin layer and the core layer wound on the skin layer). Is prevented, and the workability during unwinding and the storage stability of the stretchable material are improved.
- the layer structure of the stretchable material is not limited to the above.
- the elastic material may have a layer structure (core layer / skin layer) in which a skin layer is laminated only on one side of the core layer, and the core layer is laminated on both main surfaces of the skin layer. It may have a layer structure (core layer / skin layer / core layer).
- the core layer and the skin layer may be directly bonded, or may be indirectly bonded via an intermediate layer.
- the intermediate layer may be, for example, an adhesive layer that joins a modification layer containing a coloring material, a core layer, and a skin layer.
- the bonding mode between the core layer and the skin layer is not particularly limited.
- the resin materials constituting the core layer and the skin layer may be fused and bonded, and the bonding is interposed between the core layer and the skin layer. You may adhere
- the thickness T 1 of the core layer may be a thickness T 2 or more skin layers.
- narrowing (necking) of the stretchable portion at the time of elongation tends to be suppressed. That is, in the stretchable member obtained from such a stretchable material, necking at the time of extension is reduced, so that local action of the tightening force is prevented, and excellent comfort when worn can be realized.
- the thickness of the skin layer it is possible to further reduce the strain of the stretchable part when the stretched state is maintained for a long time.
- the strain of the stretchable part can be reduced, but it is desired that there is a skin layer from the viewpoint of productivity, workability, weather resistance, storage stability, There is an increasing expectation for a stretchable material having a skin layer and less strain at the stretchable portion.
- the ratio T 2 / T 1 of the thickness T 2 of the skin layer to the thickness T 1 of the core layer may be 0.01 or more and 1.0 or less, and is 0.1 or more and 0.5 or less. It's okay. According to such an elastic material, since the elastic member in which necking at the time of extension is more significantly suppressed is obtained, it is possible to provide a clothing product that is further excellent in comfort at the time of wearing.
- the ratio T 2 / T 1 is preferably 0.3 or less, more preferably 0.25 or less, and still more preferably. It may be 0.2 or less.
- the thickness T 2 of the skin layer exhibits a total thickness of each skin layer.
- the thickness T 1 of the core layer exhibits a total thickness of each core layer.
- the elastic material may have a tensile stress at 300% elongation in one direction of 110% or less of the tensile yield stress of the skin layer in the same direction.
- the stretchable member has a stretchable part and a shape retaining part, if the tensile stress required for stretching is significantly greater than the tensile yield stress of the skin layer, the shape retaining part cannot be plastically deformed during stretching, and the original shape cannot be maintained repeatedly. May interfere with the use of. If the tensile stress at the time of 300% elongation does not greatly exceed the tensile yield stress of the skin layer, the shape holding part can maintain the original shape even if the practically useful elongation of about 200% is performed. Bondability is further improved.
- the stretchable portion may be formed by stretching in a direction in which the tensile stress at 300% elongation and the tensile yield stress of the skin layer satisfy the above relationship.
- extension of an elastic material is based on JISK7127, and is measured with the test piece width of 25 mm, the chuck
- the stretchable material has a plurality of skin layers
- the maximum tensile yield stress of each skin layer is referred to as “tensile yield stress of skin layer”.
- the tensile yield stress of the skin layer may be measured by peeling only the skin layer from the elastic material, and may be measured using a test piece equivalent to the skin layer.
- the yield point at which all skin layers are plastically deformed can be regarded as the tensile yield stress of the skin layers.
- the shrinkage rate in the width direction orthogonal to the stretch direction is 50%. Or less, preferably 30% or less, more preferably 25% or less, more preferably 20% or less, more preferably 15% or less, and even more preferably 10% or less.
- the elastic member has the expansion / contraction part and the shape holding part, the width of the shape holding part is maintained at a constant width, and the expansion / contraction part is narrowed according to the extension.
- the width of the expansion / contraction part becomes extremely narrow at the time of extension, the difference between the width of the shape holding part and the width of the expansion / contraction part becomes large.
- the wearability may be reduced, or the tightening force may easily act locally, thereby impairing comfort during wearing.
- the shrinkage ratio in the width direction orthogonal to the extension direction at 200% extension is 30% or less, the degree of narrowing of the stretchable part at the time of extension is sufficiently small, and the wearability and comfort at wearing are sufficient.
- the stretchable portion may be formed by stretching in a direction in which the shrinkage rate falls within the above range.
- the stretchable material does not necessarily have a shrinkage rate in the above range.
- the shrinkage rate in the width direction orthogonal to the extension direction at 200% extension indicates a value measured by the following method.
- a rectangular test piece width 50 mm, length 50 mm or more
- the both ends in the extending direction of the test piece are sandwiched so that the length of the extending portion is 50 mm, and extended by 200% in the extending direction.
- the shrinkage rate (%) is calculated by (L2 / L1) ⁇ 100.
- the stretchable portion when the stretchable material is stretched by 300% in one direction to form a stretchable portion, the stretchable portion is stretched by 160% in the same direction, and strain by an elongation test that is held at 40 ° C. for 1 hour is 25%. Or less, more preferably 22% or less, and even more preferably 20% or less. In this case, even when the stretchable part is held in the stretched state, it is difficult for the strain to remain. Therefore, when applied to a clothing product, excellent fit at the time of wearing can be sufficiently maintained even by repeated use.
- the strain of 25% or less by the extension test indicates that the length of the stretchable part before the stretch test is 100% and the length of the stretchable part after the stretch test is 125% or less.
- the elastic material according to this embodiment includes a core layer containing an elastomer.
- a core layer is a layer which bears the elastic function of an elastic member, The composition etc. may be selected so that it may have desired rubber elasticity.
- the elastomer contained in the core layer is a material having rubber elasticity, and the core layer has a 10% tensile stress lower than that of the skin layer.
- the 10% tensile stress is also called 10% Modulus, and is a force per unit area necessary for 10% elongation, and is measured according to JIS K 6251.
- the 10% tensile stress of the core layer may be, for example, 0.5 MPa or less, 0.3 MPa or less, or 0.1 MPa or less. Thereby, since it stretches following small stress, the elastic member excellent in handleability is obtained.
- the core layer may have a 10% tensile stress in the above range in at least one direction.
- the core layer may have a 10% tensile stress in the above range in the stretching direction of the elastic material.
- the 300% tensile stress of the core layer may be 4 MPa or less, for example, or 2 MPa or less. Thereby, since it stretches following small stress, the elastic member excellent in handleability is obtained.
- the 300% tensile stress of the core layer may be, for example, 1 MPa or more, and preferably 1.5 MPa or more. Thereby, it is suppressed that it extends indefinitely practically.
- the core layer may have 300% tensile stress in the above range in at least one direction.
- the core layer may have a 300% tensile stress in the above range in the stretching direction of the stretchable material.
- the core layer thickness T 1 may be, for example, 10 ⁇ m or more, and is preferably 15 ⁇ m or more. Further, the thickness T 1 of the core layer may be, for example, 100 ⁇ m or less, 50 ⁇ m or less, or 35 ⁇ m or less from the viewpoint of reducing the material cost while obtaining a sufficient effect.
- the core layer may be made of a resin material containing an elastomer (hereinafter also referred to as “resin material (A)”).
- elastomer include, for example, styrene-isoprene-styrene block copolymer (SIS), styrene-butadiene-styrene block copolymer (SBS), styrene-ethylene / butylene-styrene block copolymer (SEBS), styrene butadiene rubber, hydrogenated or partially Examples include hydrogenated SIS, hydrogenated or partially hydrogenated SBS, polyurethane, ethylene copolymer (eg, ethylene vinyl acetate, ethylene-propylene copolymer, ethylene-propylene-diene terpolymer), propylene oxide (PO), and the like. .
- SIS styrene-isoprene-styrene block copolymer
- SBS
- the elastomer may contain a branched polymer.
- the stretchable portion of the stretchable member is less likely to remain strained even when worn for a long time.
- the branched polymer is a polymer having a branched structure in the molecule, and may be, for example, a graft polymer, a star polymer, a dendrimer, or the like.
- the resin material (A) constituting the core layer may contain components other than those described above.
- the resin material (A) includes a stiffening agent (eg, polyvinyl styrene, polystyrene, poly ⁇ -methyl styrene, polyester, epoxy resin, polyolefin, coumarone-indene resin), a viscosity reducing agent, a plasticizer, a tackifier ( For example, aliphatic hydrocarbon tackifier, aromatic hydrocarbon tackifier, terpene resin tackifier, hydrogenated terpene resin tackifier), dye, pigment, antioxidant, antistatic agent, adhesive, tack An inhibitor, slip agent, heat stabilizer, light stabilizer, foaming agent, glass bubble, starch, metal salt, microfiber, and the like may be included.
- a stiffening agent eg, polyvinyl styrene, polystyrene, poly ⁇ -methyl styrene, polyester, epoxy resin
- the elastic material according to the present embodiment includes a skin layer having a 10% tensile stress higher than that of the core layer in at least one direction.
- the skin layer has a function of protecting the core layer in the stretchable material, and is plastically deformed by a stretching process when the stretchable member is manufactured. At this time, the core layer is elastically deformed, and only the skin layer is plastically deformed, so that the stretched portion can be used as the stretchable portion of the stretchable member.
- the skin layer may have a function of maintaining the shape of the shape holding portion in the stretchable member.
- the 10% tensile stress of the skin layer may be 1 MPa or more, for example, or 2 MPa or more. Thereby, it does not deform
- the skin layer may have a 10% tensile stress in the above range in at least one direction. The skin layer may have a 10% tensile stress in the above range in the stretching direction of the elastic material. In this embodiment, the 10% tensile stress of the skin layer is measured according to JIS K 6251.
- the tensile yield stress of the skin layer may be, for example, 2 N / 25 mm or more, preferably 2.5 N / 25 mm or more, more preferably 3 N / 25 mm or more. Further, the tensile yield stress of the skin layer may be, for example, 10 N / 25 mm or less, and preferably 7 N / 25 mm or less.
- the skin layer may have a tensile yield stress in the above range in at least one direction. Moreover, the skin layer may have the tensile yield stress of the said range in the extending
- the tensile yield stress of the skin layer is measured in accordance with JIS K 7127 at a test piece width of 25 mm, a chuck interval of 50 mm, and a test speed of 300 mm / min.
- the tensile yield strain of the skin layer may be, for example, 20% or less, and preferably 15% or less.
- the skin layer may have a tensile yield strain in the above range in at least one direction.
- the skin layer may have a tensile yield strain in the above range in the stretching direction of the elastic material.
- the tensile yield strain of the skin layer is measured according to JIS K 7127 at a test piece width of 25 mm, a chuck interval of 50 mm, and a test speed of 300 mm / min.
- the thickness T 2 of the skin layer may be, for example, 2 ⁇ m or more, and preferably 5 ⁇ m or more from the viewpoints that the above-described preferable tensile properties can be easily obtained and that the production becomes easy.
- the thickness T 2 of the skin layer, from the viewpoint of distortion can be further reduced in the expansion unit upon maintaining the extended state for a long time, may be for example 30 ⁇ m or less and preferably 20 ⁇ m or less.
- the resin material constituting the skin layer may form a microphase separation structure.
- resin material (B) may form a microphase separation structure.
- a phase structure that is easily plastically deformed is densely distributed throughout the skin layer, it can be uniformly plastically deformed by a stretching process. Thereby, the stretchable part formed becomes excellent in the uniformity of elongation at the time of extension. Further, since the skin layer has a micro phase separation structure, necking at the time of extension is more remarkably suppressed, and an elastic member that is further excellent in comfort at the time of wearing is realized.
- the elongation becomes uniform even at a relatively low degree of stretching such as 100% stretching, and therefore any stretching such as 100%, 150%, 200%, 250%, 300%, etc.
- the stretchable material can be stretched at a degree. Note that when the degree of stretching at the time of the stretching process is different, mechanical properties such as elasticity and tensile stress of the formed stretchable part are changed. That is, in this aspect, the stretchable part having different characteristics can be formed from the same stretchable material by changing the stretching degree during the stretching process. For this reason, for example, even when the required characteristics differ depending on the part of the clothing product, the same stretchable material can be applied to each part by adjusting the degree of stretching according to the desired characteristic.
- the microphase separation structure formed by the resin material (B) may be, for example, a lamellar structure, a gyroid structure, a cylinder structure, a BCC structure, or the like.
- the microphase-separated structure may be formed by a block copolymer, for example, or may be formed by a polymer blend.
- Resin material (B) may contain a block copolymer.
- the block copolymer is preferably a block copolymer that forms a microphase-separated structure.
- Examples of the block copolymer include those containing, as elements, olefins such as ethylene, propylene, and butylene, esters such as ethylene terephthalate, and styrenes such as styrene.
- Resin material (B) may form a microphase separation structure by a polymer blend containing two or more kinds of polymers.
- the polymer contained in the resin material (B) include polypropylene, polyethylene, polybutylene, polyethylene terephthalate, and polystyrene.
- the resin material (B) may form a uniform layer structure without forming a microphase separation structure.
- the distortion by long-time wearing can be suppressed more notably.
- Resin material (B) may contain a homopolymer. According to the resin material (B) containing a homopolymer, a skin layer having the above-described uniform layer structure can be easily obtained.
- homopolymer examples include polypropylene, polyethylene, polybutylene and the like.
- Resin material (B) may contain components other than the above.
- mineral oil extenders, antistatic agents, pigments, dyes, antiblocking agents, starches, metal salts, stabilizers and the like may be included.
- the manufacturing method of the stretchable material according to the present embodiment is not particularly limited, and for example, a general multilayer film forming technique using a resin material can be applied.
- the core layer and the skin layer are integrally formed by simultaneous extrusion molding of the resin material (A) constituting the core layer and the resin material (B) constituting the skin layer. It may be.
- the conditions for the coextrusion molding may be appropriately adjusted according to the composition of the resin material (A) and the resin material (B).
- the stretchable material according to the present embodiment may be manufactured by molding and laminating the A layer containing the resin material (A) and the B layer containing the resin material (B), respectively.
- the stretchable member according to the present embodiment includes a stretchable portion (also referred to as an activation portion) having a structure in which the skin layer of the stretchable material is plastically deformed.
- the stretchable member according to the present embodiment may further include a shape holding portion (also referred to as an unactivated portion) in which the layer structure of the stretchable material is maintained.
- the stretchable member according to the present embodiment can be suitably used as an elastic web applied to clothing products and the like because the stretchable portion functions as a rubber elastic body.
- the stretchable member according to the present embodiment can be bonded to another member in the shape holding portion, thereby obtaining good bondability with the other member.
- the stretchable member may not be able to maintain an excellent fit when worn if the stretchable portion is strained by holding the stretchable portion in an extended state for a long time. Since the stretchable member according to the present embodiment is formed from the above-described stretchable material, the strain of the stretchable portion is sufficiently suppressed, and excellent fit can be maintained for a long time. Moreover, in the aspect in which the skin layer of the stretchable material has a uniform layer structure, the distortion of the stretchable portion is more remarkably suppressed, and the change in fit can be significantly reduced even by repeated use.
- the stretchable member has an uneven elongation when stretched, the wearability and the comfort when worn may be impaired.
- the stretch layer in the aspect in which the skin layer has a microphase separation structure, can have excellent elongation uniformity.
- the stretchable member when the stretchable member is applied to a clothing product that is in close contact with the skin, if the width of the stretchable portion when stretched becomes small, the tightening force tends to act locally, which may impair the comfort when worn. is there.
- the degree of narrowing of the stretchable part at the time of extension is sufficiently small, and the wearability and the comfort at the time of wearing can be sufficiently secured.
- the stretchable member according to the present embodiment is formed from the above-described stretchable material, the shape holding portion can maintain the original shape even after repeated use, and good bondability with other members can be maintained.
- the stretchable part has a structure in which the skin layer of the stretchable material is plastically deformed.
- the stretchable part may include a core layer and a plastically deformed skin layer.
- the plastically deformed skin layer may exist as a continuous layer, or may be divided by stretching.
- the shape holding part has a layer structure of stretchable material. That is, the shape holding part may include a core layer and a skin layer. It can also be said that the shape holding portion is an unstretched portion of the stretchable material.
- the stretchable member is manufactured by subjecting the stretchable material to a stretching process according to the intended use.
- the use of the elastic member is not particularly limited, and may be used for clothing, for example. More specifically, the elastic member may be, for example, a disposable diaper, an adult incontinence pad, a shower cap, a surgical gown, a hat and booth, a disposable pajamas, a competition shoulder, a clean room garment, a hat head hand or a visor. Etc., and used for an ankle band (for example, a panties cows protector), a wrist band, a rubber pan, a wet suit and the like.
- an ankle band for example, a panties cows protector
- the method for producing an elastic member includes a step of stretching at least a part of the elastic material and plastically deforming at least a part of the skin layer (also referred to as a step of activating at least a part of the elastic material). It's okay.
- the stretchable part is formed by stretching the stretchable material until the skin layer is plastically deformed. Plastic deformation is generally achieved by stretching beyond the tensile yield strain of the skin layer.
- the stretchable portion and the shape retaining portion may be formed by plastically deforming only a part of the skin layer.
- the stretching method of the stretch material is not particularly limited. For example, by sandwiching and stretching both ends of the stretchable material with a predetermined width, two shape holding portions with a predetermined width (unstretched portions sandwiched) and a stretchable portion formed between the shape holding portions, The elastic member provided is formed.
- the temperature condition during stretching of the elastic material is not particularly limited and may be room temperature.
- the stretch ratio of the stretchable material only needs to be equal to or higher than the tensile yield strain of the skin layer, and may be equal to or higher than the stretch ratio practically assumed. Further, as described above, since the mechanical properties of the stretchable part can be changed depending on the stretch ratio, the stretch ratio may be set according to desired characteristics.
- FIG. 6 is a plan view showing an aspect of the stretchable material according to the present embodiment
- FIG. 7 is an enlarged cross-sectional view taken along the line II-II in FIG.
- the stretchable material 10 includes a core layer 1 and a skin layer 2 a and a skin layer 2 b provided on both main surfaces of the core layer 1, respectively.
- the thickness T 1 of the core layer 1 is equal to or greater than the total thickness T 2 of the skin layer 2 a and the skin layer 2 b, and the total thickness T 2 of the skin layer 2 a and the skin layer 2 b with respect to the thickness T 1 of the core layer 1.
- the ratio T 2 / T 1 is 0.1 or more and 1.0 or less.
- the core layer is made of a resin material containing a branched polymer.
- the skin layer 2a and the skin layer 2b are comprised with the resin material containing a homopolymer. For this reason, the stretchable part formed from the stretchable material 10 has little distortion even when the stretched state is maintained for a long time, and can maintain excellent fit for a long time when applied to clothing products.
- the stretchable material 10 has a substantially rectangular shape in a plan view, and functions as a stretchable member by being stretched in the longitudinal direction.
- the resin materials constituting the skin layer 2a and the skin layer 2b have substantially the same composition.
- the tensile yield stress in the longitudinal direction of the skin layer 2a and the skin layer 2b is substantially the same.
- the tensile stress at 300% elongation in the longitudinal direction of the stretchable material 10 is 110% or less of the tensile yield stress of the skin layer 2a and the tensile yield stress of the skin layer 2b.
- FIGS 8 (a) and 8 (b) are diagrams for explaining one aspect of the stretching process of the elastic material.
- the elastic material 10 is clamped by the rectangular holding members in the region 3a at the center in the longitudinal direction of the elastic material 10 and the terminal region 3b and the region 3c, the region 3a is fixed, and the region 3b and the region 3c are fixed.
- the region 3a and the region 3b and the region 3a and the region 3c are stretched.
- FIG. 8B shows the state of the stretchable material at the time of stretching, and the shape holding portions 4a, 4b and 4c corresponding to the regions 3a, 3b and 3c sandwiched by the sandwiching members maintain the form of the stretchable material 10.
- the stretchable material 10 is stretched, and the skin layer of the stretchable material 10 is plastically deformed.
- shrinkage ratio indicates a ratio (L2 ⁇ L1) / L2 of a width contracted by expansion (a value obtained by subtracting a minimum width at the time of expansion (L2 ⁇ L1)) with respect to the width L2 before expansion.
- At 200% extension indicates that the length L4 at the time of extension is 200% with respect to the initial length L3 of the part to be extended.
- FIG. 9 is a plan view showing an aspect of the stretchable member according to the present embodiment.
- the elastic member 20 includes a shape holding part 14 in which the layer structure of the elastic material 10 is maintained, and an elastic part 15 formed between the shape holding parts 14.
- the stretchable portion 15 expands, and the shape holding portion 14 retains its shape. For this reason, in the elastic member 20, good adhesion to other members can be obtained by joining the other members with the shape holding portion 14.
- FIG. 10A shows the state of the test piece before the extension test.
- the test piece 30 before the extension test is a stretchable part formed by stretching the stretchable material 10 by 300% (the length L4 when stretched is 300% with respect to the length L3 before stretched in FIG. 9).
- the central portion is the extended portion 15 a and both ends are the sandwiching portions 16 a and 16 b.
- the stretched portion 15a is stretched 160% (the length L6 when stretched is 300% with respect to the length L5 before stretching) at 40 ° C. for 1 hour. Hold.
- “Strain by extension test” indicates the elongation ratio (100 ⁇ (L5 ⁇ L7) / L5) of the length L7 of the stretched portion 15b after the stretch test with respect to the length L5 of the stretched portion 15a before the stretch test.
- the strain by the stretch test of the stretchable portion 15 may be 25% or less, preferably 22% or less, more preferably 20% or less. Thereby, when applied to clothing products, excellent fit is sufficiently maintained even when worn for a long time.
- FIG. 11 is a diagram illustrating an example of the relationship between the elongation rate and tensile stress of the elastic material and the elastic member according to one aspect.
- the line 51 shows the relationship between the elongation rate of the elastic material and the tensile stress.
- a line 52 indicates the relationship between the elongation rate and the tensile stress when the elastic member formed by extending the elastic material by 300% is extended.
- the point 53 in FIG. 11 corresponds to the tensile yield point of the skin layer, and the tensile stress at the point 53 corresponds to the tensile yield stress of the skin layer.
- a point 54 in FIG. 11 is a point when the stretchable material is stretched by 300%, and the tensile stress at the point 54 may be 110% or less of the tensile stress at the point 53.
- Example X-1 As a resin material (XA-1) constituting the core layer, 72 parts by mass of “Quintac 3390” (manufactured by ZEON Corporation, styrene-isoprene-styrene block copolymer), “Quintac 3620” (manufactured by ZEON Corporation, 25 parts by mass of styrene-isoprene-styrene block copolymer) and 3 parts by mass of “PS-M AZ 12N8613” (manufactured by Dainichi Seika Kogyo Co., Ltd., styrene-isoprene-styrene block copolymer-based white masterbatch) were used.
- “Quintac 3390” manufactured by ZEON Corporation, styrene-isoprene-styrene block copolymer
- “Quintac 3620” manufactured by ZEON Corporation, 25 parts
- the white masterbatch is added to give a white color.
- a resin material (XB) constituting the skin layer “Novatec PP BC2E” (manufactured by Nippon Polypro Co., Ltd., ethylene propylene block copolymer) was used.
- a tape-like stretchable material (Xa-1) having a width of 5 cm was prepared by laminating a second skin layer made of 3.5 g of the material (XB) in this order.
- the thickness of the first skin layer was 3.8 ⁇ m
- the thickness of the core layer was 30.4 ⁇ m
- the thickness of the second skin layer was 3.8 ⁇ m
- the core The ratio T 2 / T 1 of the total thickness T 2 of the skin layer to the thickness T 1 of the layer was 0.25.
- a test piece having a width of 5 cm and a length of 7 cm was obtained from the stretchable material (Xa-1), and the following stretching tests 1 to 3 were performed.
- Extension test 1 Both ends of the test piece were sandwiched and stretched to 350% in the longitudinal direction. At the time of 100%, 200%, 300% and 350% stretching, the minimum width of the stretched portion was measured while maintaining the stretched state. From the measured minimum width and initial width (5 cm), the shrinkage rate at each extension was determined.
- Extension test 2> One side of the test piece was marked at 1 mm intervals and stretched to 300% in the longitudinal direction. At the time of 100%, 200% and 300% stretching, the distance between the marks was measured while maintaining the stretched state, and the average value and standard deviation of each distance were obtained.
- the stretchable material (Xa-1) has a sufficiently low shrinkage rate when stretched, excellent stretch uniformity, and the tensile stress at 300% stretch is the tensile yield of the skin layer. It was confirmed that it was 110% or less of the stress. Moreover, the graph obtained by the extending
- Example X-2 The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 5.25 g, respectively, and the amount of the resin material (XA-1) constituting the core layer was changed to 24.
- a tape-like stretchable material (Xa-2) having a width of 5 cm was obtained in the same manner as in Example X-1, except that the amount was changed to 0.5 g.
- the thickness of the first skin layer was 5.7 ⁇ m
- the thickness of the core layer was 26.6 ⁇ m
- the thickness of the second skin layer was 5.7 ⁇ m.
- the ratio T 2 / T 1 of the total thickness T 2 of the skin layer to the thickness T 1 of the layer was about 0.43.
- the stretchable material (Xa-2) has a sufficiently low shrinkage rate when stretched, excellent stretch uniformity, and the tensile stress at 300% stretch is the tensile yield of the skin layer. It was confirmed that it was 110% or less of the stress.
- Example X-3 The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 2.625 g, and the amount of the resin material (XA-1) constituting the core layer was changed to 29.
- a tape-like stretchable material (Xa-3) having a width of 5 cm was obtained in the same manner as in Example X-1, except that the amount was changed to .75 g.
- the first skin layer had a thickness of 2.9 ⁇ m
- the core layer had a thickness of 32.2 ⁇ m
- the second skin layer had a thickness of 2.9 ⁇ m.
- the ratio T 2 / T 1 of the total thickness T 2 of the skin layer to the thickness T 1 of the layer was about 0.18.
- the stretchable material (Xa-3) has a sufficiently low shrinkage rate when stretched, excellent stretch uniformity, and the tensile stress at 300% stretch is the tensile yield of the skin layer. It was confirmed that it was 110% or less of the stress.
- Example X-4 As the resin material (XA-2) constituting the core layer, 47 parts by weight of “Quintac 3390” (manufactured by ZEON Corporation, styrene-isoprene-styrene block copolymer), “Quintac 3620” (manufactured by ZEON Corporation, A mixed material of 50 parts by mass of styrene-isoprene-styrene block copolymer) and 3 parts by mass of “PS-M AZ 12N8613” (manufactured by Dainichi Seika Kogyo Co., Ltd., styrene-isoprene-styrene block copolymer base white masterbatch) is used. It was. As a resin material (XB) constituting the skin layer, “Novatec PP BC2E” (manufactured by Nippon Polypro Co., Ltd., ethylene propylene block copolymer) was used
- the thickness of the first skin layer was 5.7 ⁇ m
- the thickness of the core layer was 26.6 ⁇ m
- the thickness of the second skin layer was 5.7 ⁇ m.
- the ratio T 2 / T 1 of the total thickness T 2 of the skin layer to the thickness T 1 of the layer was about 0.43.
- a test piece having a width of 5 cm and a length of 7 cm was obtained, and the stretching tests 1 to 3 were performed.
- the stretchable material (Xa-4) has a sufficiently low shrinkage rate when stretched, excellent stretch uniformity, and the tensile stress at 300% stretch is the tensile yield of the skin layer. It was confirmed that it was 110% or less of the stress.
- Example X-5 The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 2.625 g, and the amount of the resin material (XA-2) constituting the core layer was changed to 29.
- a tape-like stretchable material (Xa-5) having a width of 5 cm was obtained in the same manner as in Example X-4 except that the amount was changed to .75 g.
- the thickness of the first skin layer was 2.9 ⁇ m
- the thickness of the core layer was 32.2 ⁇ m
- the thickness of the second skin layer was 2.9 ⁇ m.
- the ratio T 2 / T 1 of the total thickness T 2 of the skin layer to the thickness T 1 of the layer was about 0.18.
- the stretchable material (Xa-5) has a sufficiently low shrinkage rate when stretched, excellent stretch uniformity, and the tensile stress at 300% stretch is the tensile yield of the skin layer. It was confirmed that it was 110% or less of the stress.
- Example X-6 The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 3.5 g, and the amount of the resin material (XA-2) constituting the core layer was 28 g.
- a tape-like stretchable material (Xa-6) having a width of 5 cm was obtained in the same manner as in Example X-4 except that the change was made.
- the thickness of the first skin layer was 3.8 ⁇ m
- the thickness of the core layer was 30.2 ⁇ m
- the thickness of the second skin layer was 3.8 ⁇ m.
- the ratio T 2 / T 1 of the total thickness T 2 of the skin layer to the thickness T 1 of the layer was 0.25.
- the stretchable material (Xa-6) has a sufficiently low shrinkage rate when stretched, excellent stretch uniformity, and a tensile stress at 300% stretch is the tensile yield of the skin layer. It was confirmed that it was 110% or less of the stress.
- Example X-7 The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 7.0 g, respectively, and the amount of the resin material (XA-2) constituting the core layer was 21 g.
- a tape-like stretchable material (Xa-7) having a width of 5 cm was obtained in the same manner as in Example X-4, except that the change was made.
- the thickness of the first skin layer was 7.6 ⁇ m
- the thickness of the core layer was 22.8 ⁇ m
- the thickness of the second skin layer was 7.6 ⁇ m.
- the ratio T 2 / T 1 of the total thickness T 2 of the skin layer to the thickness T 1 of the layer was about 0.67.
- the stretchable material (Xa-7) has a sufficiently low shrinkage rate when stretched, excellent stretch uniformity, and the tensile stress at 300% stretch is the tensile yield of the skin layer. It was confirmed that it was 110% or less of the stress.
- Example X-8 The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 8.75 g, respectively, and the amount of the resin material (XA-2) constituting the core layer was changed to 17 A tape-like stretchable material (Xa-8) having a width of 5 cm was obtained in the same manner as in Example X-4 except that the amount was changed to 0.5 g.
- the thickness of the first skin layer was 9.5 ⁇ m
- the thickness of the core layer was 19.9 ⁇ m
- the thickness of the second skin layer was 9.5 ⁇ m.
- the ratio T 2 / T 1 of the total thickness T 2 of the skin layer to the thickness T 1 of the layer was 1.0.
- the stretchable material (X-8) has a sufficiently low shrinkage rate when stretched, and the tensile stress when stretched by 300% is 110% or less of the tensile yield stress of the skin layer. confirmed.
- Comparative Example X-1 an elastic member used in Mooney S size manufactured by Unicharm Co., Ltd. was used (tape-like elastic material (Xb-1)).
- the material constituting the first and second skin layers was polypropylene, and the material constituting the core layer was styrene-isoprene-styrene block copolymer.
- the thickness of the first skin layer is 3.8 ⁇ m
- the thickness of the core layer is 30.4 ⁇ m
- the thickness of the second skin layer is 3.8 ⁇ m
- the total thickness T 2 of the skin layer relative to the thickness T 1 of the core layer The ratio T 2 / T 1 was 0.25. From the stretchable material (Xb-1), a test piece having a width of 5 cm and a length of 7 cm (stretching portion 5 cm, sandwiching portions 1 cm at both ends) was obtained, and the above stretching tests 1 and 2 were performed.
- the stretchable material (Xb-2) has a large shrinkage ratio when stretched compared to Examples X-1 and X-6, and the stretched portion tends to be non-uniform. was there.
- Tables 1 and 2 show some of the results of the stretching tests 1 and 2.
- Example Y-1 As resin material (YA-1) constituting the core layer, 40 parts by weight of “Quintac 3620” (manufactured by Nippon Zeon Co., Ltd., styrene-isoprene-styrene block copolymer, mixture of linear polymer and branched polymer) 56 parts by weight of “Quintac 3390” (manufactured by Nippon Zeon Co., Ltd., styrene-isoprene-styrene block copolymer, linear polymer), 4 parts by weight of a 20% TiO 2 -containing styrene-isoprene-styrene block copolymer-based white masterbatch , And a mixed material were used.
- “Quintac 3620” manufactured by Nippon Zeon Co., Ltd., styrene-isoprene-styrene block copolymer, mixture of linear polymer and branche
- the white masterbatch is added to give a white color. Further, “Novatec PP BC2E” (produced by Nippon Polypro Co., Ltd., ethylene propylene block copolymer) was used as the resin material (YB-1) constituting the skin layer.
- a first skin layer made of 3.5 g of a resin material (YB-1), a core layer made of 28 g of a resin material (YA-1), A tape-like stretchable material (Ya-1) was prepared by laminating a second skin layer made of 3.5 g of the resin material (YB-1) in this order.
- the thickness of the first skin layer was 3.8 ⁇ m
- the thickness of the core layer was 30.4 ⁇ m
- the thickness of the second skin layer was 3.8 ⁇ m.
- the ratio T 2 / T 1 of the total thickness T 2 of the skin layer to the thickness T 1 of the layer was 0.25.
- the obtained stretch material (Ya-1) was subjected to the following elongation test. As a result, the strain by the elongation test was 20.0%.
- Example Y-2 As a resin material (YA-2) constituting the core layer, 50 parts by weight of “Quintac 3620”, 46 parts by weight of “Quintac 3390”, and a styrene-isoprene-styrene block copolymer-based white masterbatch containing 20% TiO 2 A mixed material was prepared by mixing 4 parts by mass.
- An elastic material (Ya-2) was produced in the same manner as in Example Y-1, except that the resin material (YA-2) was used instead of the resin material (YA-1).
- the obtained stretch material (Ya-2) was subjected to an elongation test in the same manner as in Example Y-1.
- the strain by the elongation test was 19.3%.
- a stretchable member was produced from a stretchable material (Ya-2) and applied to a clothing product, even when it was held for a long time in a stretched state and at a temperature of about body temperature, a good fit was obtained. Maintained.
- Example Y-3 As a resin material (YB-2) constituting the skin layer, “Novatec PP FA3EB” (manufactured by Nippon Polypro Co., Ltd., polypropylene homopolymer) was prepared. A stretchable material (Ya-3) was produced in the same manner as in Example Y-1, except that the resin material (YB-2) was used instead of the resin material (YB-1).
- the obtained stretch material (Ya-3) was subjected to an elongation test in the same manner as in Example Y-1.
- the strain by the elongation test was 19.0%.
- an elastic member is produced from an elastic material (Ya-3) and applied to a clothing product, it has good fit even when held in a stretched state and at a temperature of about body temperature for a long time. Maintained.
- Example Y-4 Resin material (YA-2) and resin material (YB-2) were prepared in the same manner as in Examples Y-2 and Y-3. Other than using resin material (YA-2) instead of resin material (YA-1) and using resin material (YB-2) instead of resin material (YB-1) Produced an elastic material (Ya-4) in the same manner as in Example Y-1.
- the obtained stretch material (Ya-4) was subjected to an elongation test in the same manner as in Example Y-1.
- the strain by the elongation test was 16.7%.
- a stretchable member was produced from a stretchable material (Ya-4) and applied to a garment product, even when it was held for a long time in a stretched state and a temperature of about body temperature, a good fit was obtained. Maintained.
- Example Y-5 Resin material (YB-2) was prepared in the same manner as Example Y-2. Instead of the resin material (YB-1), the resin material (YB-2) is used, and the amount of the resin material (YB-2) constituting the first skin layer and the second skin layer is determined. Except that the amount of the resin material (YA-1) constituting the core layer was changed to 7.0 g, respectively, and the elastic material (Ya- 5) was produced.
- the obtained stretch material (Ya-5) was subjected to an elongation test in the same manner as in Example Y-1.
- the strain by the elongation test was 24.3%.
- a stretchable member was produced from a stretchable material (Ya-5) and applied to a clothing product, even when it was held for a long time in a stretched state and at a temperature of about body temperature, sufficient fit was obtained. Maintained.
- Example Y-6 Resin material (YA-2) and resin material (YB-2) were prepared in the same manner as in Examples Y-2 and Y-3.
- the resin material (YA-2) is used instead of the resin material (YA-1)
- the resin material (YB-2) is used instead of the resin material (YB-1)
- the first The amount of the resin material (YB-2) constituting the skin layer and the second skin layer was changed to 7.0 g, and the amount of the resin material (YA-2) constituting the core layer was 21 g.
- An elastic material (Ya-6) was produced in the same manner as in Example Y-1, except that the change was made.
- the obtained stretch material (Ya-6) was subjected to an elongation test in the same manner as in Example Y-1.
- the strain by the elongation test was 22.3%.
- a stretchable member was produced from a stretchable material (Ya-6) and applied to a clothing product, even when it was held for a long time in a stretched state and at a temperature of about body temperature, sufficient fit was obtained. Maintained.
- Example Y-7 As a resin material (YA-3) constituting the core layer, 96 parts by mass of “Quintac 3620” and 4 parts by mass of a white masterbatch based on 20% TiO 2 containing styrene-isoprene-styrene block copolymer were mixed. A mixed material was prepared. An elastic material (Ya-7) was produced in the same manner as in Example Y-1, except that the resin material (YA-3) was used instead of the resin material (YA-1).
- the obtained stretch material (Ya-7) was subjected to an elongation test in the same manner as in Example Y-1.
- the strain by the elongation test was 21.0%.
- the stretchability was sufficient even when held for a long time in a stretched state and at a temperature of about body temperature. Maintained.
- Example Y-8 Resin material (YA-3) and resin material (YB-2) were prepared in the same manner as in Examples Y-7 and Y-3. Other than using resin material (YA-3) instead of resin material (YA-1) and using resin material (YB-2) instead of resin material (YB-1) Produced a stretchable material (Ya-8) in the same manner as in Example Y-1.
- the obtained stretchable material (Ya-8) was subjected to an elongation test in the same manner as in Example Y-1. As a result, the strain due to the elongation test was 18.3%. In addition, when an elastic member was produced from an elastic material (Ya-8) and applied to a clothing product, even when it was held for a long time in a stretched state and at a temperature of about body temperature, it had good fit. Maintained.
- Example Y-9 As a resin material (YA-4) constituting the core layer, 96 parts by mass of “Quintac 3450” (manufactured by Nippon Zeon Co., Ltd., styrene-isoprene-styrene block copolymer, branched polymer), containing 20% TiO 2 A mixed material was prepared by mixing 4 parts by mass of a styrene-isoprene-styrene block copolymer-based white masterbatch. A stretchable material (Ya-9) was produced in the same manner as in Example Y-1, except that the resin material (YA-4) was used instead of the resin material (YA-1).
- the obtained stretch material (Ya-9) was subjected to an elongation test in the same manner as in Example Y-1. As a result, the strain by the elongation test was 23.0%.
- a stretchable member was produced from a stretchable material (Ya-9) and applied to a garment product, even when it was held for a long time in a stretched state and at a temperature of about body temperature, it had good fit. Maintained.
- a stretchable member used in Mooney S size manufactured by Unicharm Co., Ltd. was used as a commercially available clothing product (tape-like stretchable material (Yb-1)).
- the tape-like stretchable material (Yb-1) had polypropylene layers on both sides of the core made of styrene-isoprene-styrene block copolymer.
- the core thickness was 30.4 ⁇ m, and the polypropylene layer thickness was 3.8 ⁇ m.
- the obtained stretch material (Yc-1) was subjected to an elongation test in the same manner as in Example Y-1. As a result, the strain due to the elongation test was 25.3%. In addition, when an elastic member was produced from the elastic material (Yc-1) and applied to a clothing product, the stretched part was easily distorted by stretching for a long time, and the fit property tended to be inferior compared to the examples. It was.
- Reference Example Y-2 96 parts by mass of “Quintac 3421” (manufactured by Zeon Corporation, styrene-isoprene-styrene block copolymer, linear polymer) as a resin material (YA-5) constituting the core layer, and containing 20% TiO 2
- a mixed material was prepared by mixing 4 parts by weight of a styrene-isoprene-styrene block copolymer-based white masterbatch.
- An elastic material (Yc-2) was produced in the same manner as in Example Y-1, except that the resin material (YA-5) was used instead of the resin material (YA-1).
- the obtained stretchable material (Yc-2) was subjected to an elongation test in the same manner as in Example Y-1.
- the strain by the elongation test was 33.0%.
- the stretchable portion was easily distorted by stretching for a long time, and there was a tendency for the fit to be inferior compared to the examples. It was.
- Example Y-10 “Quintac 3620” was prepared as a resin material constituting the core layer.
- a stretchable material (Ya-10) was produced in the same manner as in Example Y-1, except that “Quintac 3620” was used instead of the resin material (YA-1).
- a test piece having a width of 25 mm and a length of 100 mm (stretched portion 25 mm, sandwiched portions 37.5 mm) was obtained from the stretchable material (Ya-10), and the following test was performed.
- the first-time stress (at 100%) was 1.80 (N / 25 mm)
- the second-time return stress (at 50%) was 0.20 (N / 25 mm).
- Example Y-11 “Quintac 3450” was prepared as a resin material constituting the core layer.
- a stretchable material (Ya-11) was produced in the same manner as in Example Y-1, except that “Quintac 3450” was used instead of the resin material (YA-1).
- Example Y-10, Example Y-11, and Reference Example Y-3 when the core layer contains a branched polymer, the second-time return stress (at 50) is greater than when the core layer contains only a linear polymer. %) Increases.
- a large second return stress (50%) means that when the stretch material is applied to a clothing product, the force of fitting the clothing product to the wearer's body is great. From this, it can be said that the stretchable material containing a branched polymer in the core layer is particularly suitable for applications requiring fit. If the first-time stress (100%) is small, the force required for the stretching treatment of the stretchable material is small and the workability is excellent.
- the second return stress (at 50%) can be increased while the first-time stress (at 100%) is kept within a range where sufficient workability can be obtained. ing.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Textile Engineering (AREA)
- Laminated Bodies (AREA)
- Corsets Or Brassieres (AREA)
- Orthopedics, Nursing, And Contraception (AREA)
- Professional, Industrial, Or Sporting Protective Garments (AREA)
Abstract
Description
本発明に係る伸縮材、伸縮性部材及び衣料製品の好適な第一の実施形態について以下に説明する。 [First embodiment]
A preferred first embodiment of the stretchable material, stretchable member and clothing product according to the present invention will be described below.
本実施形態に係る伸縮材は、エラストマーを含むコア層と、少なくとも一方向においてコア層より低い引張降伏応力を有するスキン層と、を備える。 (Elastic material)
The elastic material according to the present embodiment includes a core layer containing an elastomer and a skin layer having a tensile yield stress lower than that of the core layer in at least one direction.
本実施形態に係る伸縮材は、エラストマーを含むコア層を備える。コア層は、伸縮性部材の弾性機能を担う層であり、所望のゴム弾性を有するようにその組成等が選択されていてよい。 <Core layer>
The elastic material according to this embodiment includes a core layer containing an elastomer. A core layer is a layer which bears the elastic function of an elastic member, The composition etc. may be selected so that it may have desired rubber elasticity.
本実施形態に係る伸縮材は、少なくとも一方向においてコア層より高い10%引張応力を有する、スキン層を備える。スキン層は、伸縮材においてコア層を保護する機能を有し、伸縮性部材の製造時には延伸処理によって塑性変形される。このとき、コア層は弾性変形し、スキン層のみが塑性変形することで、延伸部分が伸縮性部材の伸縮部として利用可能となる。なお、スキン層は、伸縮性部材において、形状保持部の形状を維持する機能を有していてよい。 <Skin layer>
The elastic material according to the present embodiment includes a skin layer having a 10% tensile stress higher than that of the core layer in at least one direction. The skin layer has a function of protecting the core layer in the stretchable material, and is plastically deformed by a stretching process when the stretchable member is manufactured. At this time, the core layer is elastically deformed, and only the skin layer is plastically deformed, so that the stretched portion can be used as the stretchable portion of the stretchable member. The skin layer may have a function of maintaining the shape of the shape holding portion in the stretchable member.
本実施形態に係る伸縮性部材は、伸縮材のスキン層が塑性変形した構造を有する伸縮部(活性化部ともいう)を備える。また、本実施形態に係る伸縮性部材は、伸縮材の層構造が維持された形状保持部(未活性化部ともいう)をさらに備えていてよい。 (Elastic member)
The stretchable member according to the present embodiment includes a stretchable portion (also referred to as an activation portion) having a structure in which the skin layer of the stretchable material is plastically deformed. The stretchable member according to the present embodiment may further include a shape holding portion (also referred to as an unactivated portion) in which the layer structure of the stretchable material is maintained.
本発明に係る伸縮材、伸縮性部材及び衣料製品の好適な第二の実施形態について以下に説明する。 [Second Embodiment]
A preferred second embodiment of the stretchable material, stretchable member and clothing product according to the present invention will be described below.
本実施形態に係る伸縮材は、エラストマーを含むコア層と、少なくとも一方向においてコア層より高い10%引張応力を有するスキン層と、を備える。 (Elastic material)
The elastic material according to the present embodiment includes a core layer containing an elastomer and a skin layer having a higher 10% tensile stress than the core layer in at least one direction.
本実施形態に係る伸縮材は、エラストマーを含むコア層を備える。コア層は、伸縮性部材の弾性機能を担う層であり、所望のゴム弾性を有するようにその組成等が選択されてよい。 <Core layer>
The elastic material according to this embodiment includes a core layer containing an elastomer. A core layer is a layer which bears the elastic function of an elastic member, The composition etc. may be selected so that it may have desired rubber elasticity.
本実施形態に係る伸縮材は、少なくとも一方向においてコア層より高い10%引張応力を有する、スキン層を備える。スキン層は、伸縮材においてコア層を保護する機能を有し、伸縮性部材の製造時には延伸処理によって塑性変形される。このとき、コア層は弾性変形し、スキン層のみが塑性変形することで、延伸部分が伸縮性部材の伸縮部として利用可能となる。なお、スキン層は、伸縮性部材において、形状保持部の形状を維持する機能を有していてよい。 <Skin layer>
The elastic material according to the present embodiment includes a skin layer having a 10% tensile stress higher than that of the core layer in at least one direction. The skin layer has a function of protecting the core layer in the stretchable material, and is plastically deformed by a stretching process when the stretchable member is manufactured. At this time, the core layer is elastically deformed, and only the skin layer is plastically deformed, so that the stretched portion can be used as the stretchable portion of the stretchable member. The skin layer may have a function of maintaining the shape of the shape holding portion in the stretchable member.
本実施形態に係る伸縮性部材は、伸縮材のスキン層が塑性変形した構造を有する伸縮部(活性化部ともいう)を備える。また、本実施形態に係る伸縮性部材は、伸縮材の層構造が維持された形状保持部(未活性化部ともいう)をさらに備えていてよい。 (Elastic member)
The stretchable member according to the present embodiment includes a stretchable portion (also referred to as an activation portion) having a structure in which the skin layer of the stretchable material is plastically deformed. The stretchable member according to the present embodiment may further include a shape holding portion (also referred to as an unactivated portion) in which the layer structure of the stretchable material is maintained.
(実施例X-1)
コア層を構成する樹脂材料(X-A-1)として、「Quintac3390」(日本ゼオン株式会社製、スチレン-イソプレン-スチレンブロックコポリマー)72質量部と、「Quintac 3620」(日本ゼオン株式会社製、スチレン-イソプレン-スチレンブロックコポリマー)25質量部と、「PS-M AZ 12N8613」(大日精化工業株式会社製、スチレン-イソプレン-スチレンブロックコポリマーベース白色マスターバッチ)3質量部の混合材料を用いた。なお、白色マスターバッチは白色をつけるために添加している。スキン層を構成する樹脂材料(X-B)として、「Novatec PP BC2E」(日本ポリプロ株式会社製、エチレンプロピレンブロックコポリマー)を用いた。 [Examples mainly related to the first embodiment]
Example X-1
As a resin material (XA-1) constituting the core layer, 72 parts by mass of “Quintac 3390” (manufactured by ZEON Corporation, styrene-isoprene-styrene block copolymer), “Quintac 3620” (manufactured by ZEON Corporation, 25 parts by mass of styrene-isoprene-styrene block copolymer) and 3 parts by mass of “PS-M AZ 12N8613” (manufactured by Dainichi Seika Kogyo Co., Ltd., styrene-isoprene-styrene block copolymer-based white masterbatch) were used. . The white masterbatch is added to give a white color. As a resin material (XB) constituting the skin layer, “Novatec PP BC2E” (manufactured by Nippon Polypro Co., Ltd., ethylene propylene block copolymer) was used.
試験片の両端をそれぞれ挟持し、長手方向に350%まで延伸させた。100%、200%、300%及び350%延伸時に、それぞれ延伸状態を維持しつつ、延伸部の最小幅を測定した。測定された最小幅と初期の幅(5cm)から、各伸長時の縮み率を求めた。 <
Both ends of the test piece were sandwiched and stretched to 350% in the longitudinal direction. At the time of 100%, 200%, 300% and 350% stretching, the minimum width of the stretched portion was measured while maintaining the stretched state. From the measured minimum width and initial width (5 cm), the shrinkage rate at each extension was determined.
試験片の一方面に1mm間隔で目印を付し、長手方向に300%まで延伸させた。100%、200%及び300%延伸時に、それぞれ延伸状態を維持しつつ、目印の間隔を測定し、各間隔の平均値及び標準偏差を求めた。 <
One side of the test piece was marked at 1 mm intervals and stretched to 300% in the longitudinal direction. At the time of 100%, 200% and 300% stretching, the distance between the marks was measured while maintaining the stretched state, and the average value and standard deviation of each distance were obtained.
テンシロン万能材料試験機(RTG-1225、株式会社エー・アンド・デイ社製)によって試験片の300%までの引張応力と伸長率との関係を求め、図5に示すようにグラフ化した。得られたグラフから、試験片の引張降伏応力と、300%伸長時の引張応力を求めた。 <
The relationship between the tensile stress up to 300% of the test piece and the elongation rate was obtained using a Tensilon universal material testing machine (RTG-1225, manufactured by A & D Co., Ltd.), and was graphed as shown in FIG. From the obtained graph, the tensile yield stress of the test piece and the tensile stress at 300% elongation were determined.
第一のスキン層及び第二のスキン層を構成する樹脂材料(X-B)の量をそれぞれ5.25gに変更し、コア層を構成する樹脂材料(X-A-1)の量を24.5gに変更したこと以外は、実施例X-1と同様にして5cm幅のテープ状伸縮材(X-a-2)を得た。 Example X-2
The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 5.25 g, respectively, and the amount of the resin material (XA-1) constituting the core layer was changed to 24. A tape-like stretchable material (Xa-2) having a width of 5 cm was obtained in the same manner as in Example X-1, except that the amount was changed to 0.5 g.
第一のスキン層及び第二のスキン層を構成する樹脂材料(X-B)の量をそれぞれ2.625gに変更し、コア層を構成する樹脂材料(X-A-1)の量を29.75gに変更したこと以外は、実施例X-1と同様にして5cm幅のテープ状伸縮材(X-a-3)を得た。 Example X-3
The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 2.625 g, and the amount of the resin material (XA-1) constituting the core layer was changed to 29. A tape-like stretchable material (Xa-3) having a width of 5 cm was obtained in the same manner as in Example X-1, except that the amount was changed to .75 g.
コア層を構成する樹脂材料(X-A-2)として、「Quintac3390」(日本ゼオン株式会社製、スチレン-イソプレン-スチレンブロックコポリマー)47質量部と、「Quintac 3620」(日本ゼオン株式会社製、スチレン-イソプレン-スチレンブロックコポリマー)50質量部と、「PS-M AZ 12N8613」(大日精化工業株式会社製、スチレン-イソプレン-スチレンブロックコポリマーベース白色マスターバッチ)3質量部との混合材料を用いた。スキン層を構成する樹脂材料(X-B)として、「Novatec PP BC2E」(日本ポリプロ株式会社製、エチレンプロピレンブロックコポリマー)を用いた。 Example X-4
As the resin material (XA-2) constituting the core layer, 47 parts by weight of “Quintac 3390” (manufactured by ZEON Corporation, styrene-isoprene-styrene block copolymer), “Quintac 3620” (manufactured by ZEON Corporation, A mixed material of 50 parts by mass of styrene-isoprene-styrene block copolymer) and 3 parts by mass of “PS-M AZ 12N8613” (manufactured by Dainichi Seika Kogyo Co., Ltd., styrene-isoprene-styrene block copolymer base white masterbatch) is used. It was. As a resin material (XB) constituting the skin layer, “Novatec PP BC2E” (manufactured by Nippon Polypro Co., Ltd., ethylene propylene block copolymer) was used.
第一のスキン層及び第二のスキン層を構成する樹脂材料(X-B)の量をそれぞれ2.625gに変更し、コア層を構成する樹脂材料(X-A-2)の量を29.75gに変更したこと以外は、実施例X-4と同様にして5cm幅のテープ状伸縮材(X-a-5)を得た。 Example X-5
The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 2.625 g, and the amount of the resin material (XA-2) constituting the core layer was changed to 29. A tape-like stretchable material (Xa-5) having a width of 5 cm was obtained in the same manner as in Example X-4 except that the amount was changed to .75 g.
第一のスキン層及び第二のスキン層を構成する樹脂材料(X-B)の量をそれぞれ3.5gに変更し、コア層を構成する樹脂材料(X-A-2)の量を28gに変更したこと以外は、実施例X-4と同様にして5cm幅のテープ状伸縮材(X-a-6)を得た。 Example X-6
The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 3.5 g, and the amount of the resin material (XA-2) constituting the core layer was 28 g. A tape-like stretchable material (Xa-6) having a width of 5 cm was obtained in the same manner as in Example X-4 except that the change was made.
第一のスキン層及び第二のスキン層を構成する樹脂材料(X-B)の量をそれぞれ7.0gに変更し、コア層を構成する樹脂材料(X-A-2)の量を21gに変更したこと以外は、実施例X-4と同様にして5cm幅のテープ状伸縮材(X-a-7)を得た。 (Example X-7)
The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 7.0 g, respectively, and the amount of the resin material (XA-2) constituting the core layer was 21 g. A tape-like stretchable material (Xa-7) having a width of 5 cm was obtained in the same manner as in Example X-4, except that the change was made.
第一のスキン層及び第二のスキン層を構成する樹脂材料(X-B)の量をそれぞれ8.75gに変更し、コア層を構成する樹脂材料(X-A-2)の量を17.5gに変更したこと以外は、実施例X-4と同様にして5cm幅のテープ状伸縮材(X-a-8)を得た。 Example X-8
The amount of the resin material (XB) constituting the first skin layer and the second skin layer was changed to 8.75 g, respectively, and the amount of the resin material (XA-2) constituting the core layer was changed to 17 A tape-like stretchable material (Xa-8) having a width of 5 cm was obtained in the same manner as in Example X-4 except that the amount was changed to 0.5 g.
比較対象として、ユニチャーム株式会社製 ムーニー Sサイズで使用されている伸縮性部材を使用した(テープ状伸縮材(X-b-1))。第一及び第二のスキン層を構成する材料はポリプロピレン、コア層を構成する材料はスチレン-イソプレン-スチレンブロックコポリマーであった。 (Comparative Example X-1)
As a comparison object, an elastic member used in Mooney S size manufactured by Unicharm Co., Ltd. was used (tape-like elastic material (Xb-1)). The material constituting the first and second skin layers was polypropylene, and the material constituting the core layer was styrene-isoprene-styrene block copolymer.
スキン層を構成する樹脂材料(X-B)を、「Novatec PP FA3EB」(日本ポリプロ株式会社製、ホモポリプロピレン)に変更したこと以外は、実施例X-6と同様にして、5cm幅のテープ状伸縮材(X-b-2)を作製した。得られた伸縮材(X-b-2)において、第一のスキン層の厚みは3.8μm、コア層の厚みは32.2μm、第二のスキン層の厚みは3.8μmであり、コア層の厚みT1に対するスキン層の総厚みT2の比T2/T1は0.25であった。伸縮材(X-b-2)から、幅5cm、長さ7cm(延伸部分5cm、両端の挟持部分1cm)の試験片を得て、上記の延伸試験1及び2を行った。 (Reference Example X-1)
5 cm wide tape as in Example X-6, except that the resin material (XB) constituting the skin layer was changed to “Novatec PP FA3EB” (manufactured by Nippon Polypro Co., Ltd., homopolypropylene). A stretchable material (Xb-2) was produced. In the obtained elastic material (Xb-2), the thickness of the first skin layer was 3.8 μm, the thickness of the core layer was 32.2 μm, and the thickness of the second skin layer was 3.8 μm. The ratio T 2 / T 1 of the total thickness T 2 of the skin layer to the thickness T 1 of the layer was 0.25. From the stretchable material (Xb-2), a test piece having a width of 5 cm and a length of 7 cm (stretching
(実施例Y-1)
コア層を構成する樹脂材料(Y-A-1)として、「Quintac 3620」(日本ゼオン株式会社製、スチレン-イソプレン-スチレンブロックコポリマー、直鎖状ポリマーと分岐状ポリマーの混合物)40質量部と、「Quintac3390」(日本ゼオン株式会社製、スチレン-イソプレン-スチレンブロックコポリマー、直鎖状ポリマー)56質量部と、20%TiO2含有のスチレン-イソプレン-スチレンブロックコポリマーベース白色マスターバッチ4質量部と、を混合した混合材料を用いた。なお、白色マスターバッチは白色をつけるために添加している。また、スキン層を構成する樹脂材料(Y-B-1)として、「Novatec PP BC2E」(日本ポリプロ株式会社製、エチレンプロピレンブロックコポリマー)を用いた。 [Examples mainly related to the second embodiment]
Example Y-1
As resin material (YA-1) constituting the core layer, 40 parts by weight of “Quintac 3620” (manufactured by Nippon Zeon Co., Ltd., styrene-isoprene-styrene block copolymer, mixture of linear polymer and branched polymer) 56 parts by weight of “Quintac 3390” (manufactured by Nippon Zeon Co., Ltd., styrene-isoprene-styrene block copolymer, linear polymer), 4 parts by weight of a 20% TiO 2 -containing styrene-isoprene-styrene block copolymer-based white masterbatch , And a mixed material were used. The white masterbatch is added to give a white color. Further, “Novatec PP BC2E” (produced by Nippon Polypro Co., Ltd., ethylene propylene block copolymer) was used as the resin material (YB-1) constituting the skin layer.
伸縮材を長手方向(共押出フィルム製造システムにおいてテープ状伸縮材が搬送される方向とは直交する方向、Cross Direction)に300%まで伸長させることにより、延伸部分のスキン層を塑性変形させて、伸縮部を作製した。当該伸縮部から、幅4cm、長さ15cm(延伸部分:10cm(=L5)、両端の挟持部分:各2.5cm)の試験片を得た。試験片の両端を挟持し、延伸部分を160%伸長させ、伸長状態のまま40℃で1時間保持した。1時間後、伸長状態から解放し、延伸部分の長さL7を測定した。長さL5及びL7から、以下の式で伸長試験によるひずみを求めた。
伸長試験によるひずみ(%)=100×(L5-L7)/L5 <Extension test>
By stretching the elastic layer to 300% in the longitudinal direction (direction perpendicular to the direction in which the tape-shaped elastic material is conveyed in the coextrusion film production system, Cross Direction), the skin layer of the stretched part is plastically deformed, A stretchable part was produced. A test piece having a width of 4 cm and a length of 15 cm (stretched portion: 10 cm (= L5), sandwiched portions at both ends: 2.5 cm each) was obtained from the stretchable portion. Both ends of the test piece were sandwiched, the stretched part was stretched by 160%, and the stretched state was kept at 40 ° C. for 1 hour. After 1 hour, the stretched state was released, and the length L7 of the stretched portion was measured. From the lengths L5 and L7, the strain by the extension test was determined by the following formula.
Strain by elongation test (%) = 100 × (L5-L7) / L5
コア層を構成する樹脂材料(Y-A-2)として、「Quintac 3620」50質量部と、「Quintac3390」46質量部と、20%TiO2含有のスチレン-イソプレン-スチレンブロックコポリマーベース白色マスターバッチ4質量部と、を混合した混合材料を準備した。樹脂材料(Y-A-1)に代えて樹脂材料(Y-A-2)を用いたこと以外は、実施例Y-1と同様にして伸縮材(Y-a-2)を作製した。 Example Y-2
As a resin material (YA-2) constituting the core layer, 50 parts by weight of “Quintac 3620”, 46 parts by weight of “Quintac 3390”, and a styrene-isoprene-styrene block copolymer-based white masterbatch containing 20% TiO 2 A mixed material was prepared by mixing 4 parts by mass. An elastic material (Ya-2) was produced in the same manner as in Example Y-1, except that the resin material (YA-2) was used instead of the resin material (YA-1).
スキン層を構成する樹脂材料(Y-B-2)として、「Novatec PP FA3EB」(日本ポリプロ株式会社製、ポリプロピレンホモポリマー)を準備した。樹脂材料(Y-B-1)に代えて樹脂材料(Y-B-2)を用いたこと以外は、実施例Y-1と同様にして伸縮材(Y-a-3)を作製した。 Example Y-3
As a resin material (YB-2) constituting the skin layer, “Novatec PP FA3EB” (manufactured by Nippon Polypro Co., Ltd., polypropylene homopolymer) was prepared. A stretchable material (Ya-3) was produced in the same manner as in Example Y-1, except that the resin material (YB-2) was used instead of the resin material (YB-1).
実施例Y-2及びY-3と同様に樹脂材料(Y-A-2)及び樹脂材料(Y-B-2)を準備した。樹脂材料(Y-A-1)に代えて樹脂材料(Y-A-2)を用い、樹脂材料(Y-B-1)に代えて樹脂材料(Y-B-2)を用いたこと以外は、実施例Y-1と同様にして、伸縮材(Y-a-4)を作製した。 Example Y-4
Resin material (YA-2) and resin material (YB-2) were prepared in the same manner as in Examples Y-2 and Y-3. Other than using resin material (YA-2) instead of resin material (YA-1) and using resin material (YB-2) instead of resin material (YB-1) Produced an elastic material (Ya-4) in the same manner as in Example Y-1.
実施例Y-2と同様に樹脂材料(Y-B-2)を準備した。樹脂材料(Y-B-1)に代えて樹脂材料(Y-B-2)を用い、第一のスキン層及び第二のスキン層を構成する樹脂材料(Y-B-2)の量をそれぞれ7.0gに変更し、コア層を構成する樹脂材料(Y-A-1)の量を21gに変更したこと以外は、実施例Y-1と同様にして、伸縮材(Y-a-5)を作製した。 Example Y-5
Resin material (YB-2) was prepared in the same manner as Example Y-2. Instead of the resin material (YB-1), the resin material (YB-2) is used, and the amount of the resin material (YB-2) constituting the first skin layer and the second skin layer is determined. Except that the amount of the resin material (YA-1) constituting the core layer was changed to 7.0 g, respectively, and the elastic material (Ya- 5) was produced.
実施例Y-2及びY-3と同様に樹脂材料(Y-A-2)及び樹脂材料(Y-B-2)を準備した。樹脂材料(Y-A-1)に代えて樹脂材料(Y-A-2)を用い、樹脂材料(Y-B-1)に代えて樹脂材料(Y-B-2)を用い、第一のスキン層及び第二のスキン層を構成する樹脂材料(Y-B-2)の量をそれぞれ7.0gに変更し、コア層を構成する樹脂材料(Y-A-2)の量を21gに変更したこと以外は、実施例Y-1と同様にして、伸縮材(Y-a-6)を作製した。 Example Y-6
Resin material (YA-2) and resin material (YB-2) were prepared in the same manner as in Examples Y-2 and Y-3. The resin material (YA-2) is used instead of the resin material (YA-1), the resin material (YB-2) is used instead of the resin material (YB-1), and the first The amount of the resin material (YB-2) constituting the skin layer and the second skin layer was changed to 7.0 g, and the amount of the resin material (YA-2) constituting the core layer was 21 g. An elastic material (Ya-6) was produced in the same manner as in Example Y-1, except that the change was made.
コア層を構成する樹脂材料(Y-A-3)として、「Quintac 3620」96質量部と、20%TiO2含有のスチレン-イソプレン-スチレンブロックコポリマーベース白色マスターバッチ4質量部と、を混合した混合材料を準備した。樹脂材料(Y-A-1)に代えて樹脂材料(Y-A-3)を用いたこと以外は、実施例Y-1と同様にして伸縮材(Y-a-7)を作製した。 (Example Y-7)
As a resin material (YA-3) constituting the core layer, 96 parts by mass of “Quintac 3620” and 4 parts by mass of a white masterbatch based on 20% TiO 2 containing styrene-isoprene-styrene block copolymer were mixed. A mixed material was prepared. An elastic material (Ya-7) was produced in the same manner as in Example Y-1, except that the resin material (YA-3) was used instead of the resin material (YA-1).
実施例Y-7及びY-3と同様に樹脂材料(Y-A-3)及び樹脂材料(Y-B-2)を準備した。樹脂材料(Y-A-1)に代えて樹脂材料(Y-A-3)を用い、樹脂材料(Y-B-1)に代えて樹脂材料(Y-B-2)を用いたこと以外は、実施例Y-1と同様にして、伸縮材(Y-a-8)を作製した。 (Example Y-8)
Resin material (YA-3) and resin material (YB-2) were prepared in the same manner as in Examples Y-7 and Y-3. Other than using resin material (YA-3) instead of resin material (YA-1) and using resin material (YB-2) instead of resin material (YB-1) Produced a stretchable material (Ya-8) in the same manner as in Example Y-1.
コア層を構成する樹脂材料(Y-A-4)として、「Quintac 3450」(日本ゼオン株式会社製、スチレン-イソプレン-スチレンブロックコポリマー、分岐状ポリマー)96質量部と、20%TiO2含有のスチレン-イソプレン-スチレンブロックコポリマーベース白色マスターバッチ4質量部と、を混合した混合材料を準備した。樹脂材料(Y-A-1)に代えて樹脂材料(Y-A-4)を用いたこと以外は、実施例Y-1と同様にして伸縮材(Y-a-9)を作製した。 Example Y-9
As a resin material (YA-4) constituting the core layer, 96 parts by mass of “Quintac 3450” (manufactured by Nippon Zeon Co., Ltd., styrene-isoprene-styrene block copolymer, branched polymer), containing 20% TiO 2 A mixed material was prepared by mixing 4 parts by mass of a styrene-isoprene-styrene block copolymer-based white masterbatch. A stretchable material (Ya-9) was produced in the same manner as in Example Y-1, except that the resin material (YA-4) was used instead of the resin material (YA-1).
比較対象として、市販されている衣料製品として、ユニチャーム株式会社製 ムーニー Sサイズで使用されている伸縮性部材を使用した(テープ状伸縮材(Y-b-1))。テープ状伸縮材(Y-b-1)は、スチレン-イソプレン-スチレンブロックコポリマーからなるコアの両面にポリプロピレン層を有していた。コアの厚みは30.4μm、ポリプロピレン層の厚みは3.8μmであった。 (Comparative Example Y-1)
As a comparison object, a stretchable member used in Mooney S size manufactured by Unicharm Co., Ltd. was used as a commercially available clothing product (tape-like stretchable material (Yb-1)). The tape-like stretchable material (Yb-1) had polypropylene layers on both sides of the core made of styrene-isoprene-styrene block copolymer. The core thickness was 30.4 μm, and the polypropylene layer thickness was 3.8 μm.
コア層を構成する樹脂材料(Y-A-4)として、「Kraton D1114P」(クレイトンポリマージャパン社製、スチレン-イソプレン-スチレンブロックコポリマー、直鎖状ポリマー)を準備した。樹脂材料(Y-A-1)に代えて樹脂材料(Y-A-4)を用いたこと以外は、実施例Y-1と同様にして、伸縮材(Y-c-1)を作製した。 (Reference Example Y-1)
As a resin material (YA-4) constituting the core layer, “Kraton D1114P” (manufactured by Kraton Polymer Japan, styrene-isoprene-styrene block copolymer, linear polymer) was prepared. A stretchable material (Yc-1) was produced in the same manner as in Example Y-1, except that the resin material (YA-4) was used instead of the resin material (YA-1). .
コア層を構成する樹脂材料(Y-A-5)として、「Quintac 3421」(日本ゼオン株式会社製、スチレン-イソプレン-スチレンブロックコポリマー、直鎖状ポリマー)96質量部と、20%TiO2含有のスチレン-イソプレン-スチレンブロックコポリマーベース白色マスターバッチ4質量部と、を混合した混合材料を準備した。樹脂材料(Y-A-1)に代えて樹脂材料(Y-A-5)を用いたこと以外は、実施例Y-1と同様にして伸縮材(Y-c-2)を作製した。 (Reference Example Y-2)
96 parts by mass of “Quintac 3421” (manufactured by Zeon Corporation, styrene-isoprene-styrene block copolymer, linear polymer) as a resin material (YA-5) constituting the core layer, and containing 20% TiO 2 A mixed material was prepared by mixing 4 parts by weight of a styrene-isoprene-styrene block copolymer-based white masterbatch. An elastic material (Yc-2) was produced in the same manner as in Example Y-1, except that the resin material (YA-5) was used instead of the resin material (YA-1).
コア層を構成する樹脂材料として「Quintac 3620」を準備した。樹脂材料(Y-A-1)に代えて「Quintac 3620」を用いたこと以外は、実施例Y-1と同様にして伸縮材(Y-a-10)を作製した。 (Example Y-10)
“Quintac 3620” was prepared as a resin material constituting the core layer. A stretchable material (Ya-10) was produced in the same manner as in Example Y-1, except that “Quintac 3620” was used instead of the resin material (YA-1).
試験片の両端をそれぞれ挟持し、長手方向に300mm/分で100%まで延伸させ、そのときの応力(行き応力)を測定した。この測定結果を1回目行き応力(於100%)(1st loading force at 100%)(N/25mm)とした。
次いで、伸長状態を解放し、再度300mm/分で100%まで伸長させてから、300mm/分で50%まで戻した。伸張率50%まで戻したときの応力(戻り応力)を測定し、この測定結果を2回目戻り応力(於50%)(2nd unloading force at 50%)(N/25mm)とした。 <Stress measurement test>
Both ends of the test piece were sandwiched and stretched to 100% at 300 mm / min in the longitudinal direction, and the stress (going stress) at that time was measured. The measurement result was defined as a first-time stress (100%) (1st loading force at 100%) (N / 25 mm).
Next, the stretched state was released, and again stretched to 100% at 300 mm / min, and then returned to 50% at 300 mm / min. The stress (return stress) when the elongation was returned to 50% was measured, and the measurement result was defined as the second return stress (50%) (2nd unloading force at 50%) (N / 25 mm).
コア層を構成する樹脂材料として「Quintac 3450」を準備した。樹脂材料(Y-A-1)に代えて「Quintac 3450」を用いたこと以外は、実施例Y-1と同様にして伸縮材(Y-a-11)を作製した。 Example Y-11
“Quintac 3450” was prepared as a resin material constituting the core layer. A stretchable material (Ya-11) was produced in the same manner as in Example Y-1, except that “Quintac 3450” was used instead of the resin material (YA-1).
コア層を構成する樹脂材料として「Quintac 3421」を準備した。樹脂材料(Y-A-1)に代えて「Quintac 3421」を用いたこと以外は、実施例Y-1と同様にして伸縮材(Y-c-3)を作製した。 (Reference Example Y-3)
“Quintac 3421” was prepared as a resin material constituting the core layer. A stretchable material (Yc-3) was produced in the same manner as in Example Y-1, except that “Quintac 3421” was used in place of the resin material (YA-1).
Claims (31)
- エラストマーを含むコア層と、
少なくとも一方向において前記コア層より高い10%引張応力を有し、且つミクロ相分離構造を形成する樹脂材料を含む、少なくとも1つのスキン層と、
を備える、伸縮材。 A core layer comprising an elastomer;
At least one skin layer comprising a resin material having a 10% tensile stress higher than the core layer in at least one direction and forming a microphase separation structure;
A stretchable material. - 前記コア層の両主面上にそれぞれ前記スキン層が設けられている、請求項1に記載の伸縮材。 The elastic material according to claim 1, wherein the skin layers are respectively provided on both main surfaces of the core layer.
- 前記樹脂材料がブロックコポリマーを含有する、請求項1又は2に記載の伸縮材。 The stretchable material according to claim 1 or 2, wherein the resin material contains a block copolymer.
- 前記コア層の厚みが、前記スキン層の厚み以上である、請求項1~3のいずれか一項に記載の伸縮材。 The stretchable material according to any one of claims 1 to 3, wherein a thickness of the core layer is equal to or greater than a thickness of the skin layer.
- 前記コア層の厚みT1に対する前記スキン層の厚みT2の比T2/T1が、0.1以上1.0以下である、請求項1~4のいずれか一項に記載の伸縮材。 The stretchable material according to any one of claims 1 to 4, wherein a ratio T 2 / T 1 of the thickness T 2 of the skin layer to the thickness T 1 of the core layer is 0.1 or more and 1.0 or less. .
- 前記比T2/T1が、0.2以上0.5以下である、請求項5に記載の伸縮材。 The stretchable material according to claim 5, wherein the ratio T 2 / T 1 is 0.2 or more and 0.5 or less.
- 少なくとも一方向において、
300%伸長時の引張応力が前記スキン層の引張降伏応力の110%以下であり、且つ、200%伸長時の伸張方向に直交する幅方向への縮み率が30%以下である、請求項1~6のいずれか一項に記載の伸縮材。 In at least one direction,
The tensile stress at 300% elongation is 110% or less of the tensile yield stress of the skin layer, and the shrinkage ratio in the width direction perpendicular to the elongation direction at 200% elongation is 30% or less. The elastic material according to any one of 1 to 6. - エラストマーを含むコア層と、
少なくとも一方向において前記コア層より低い引張降伏応力を有する、少なくとも1つのスキン層と、
を備え、
少なくとも一方向において、
300%伸長時の引張応力が前記スキン層の引張降伏応力の110%以下であり、且つ、200%伸長時の伸張方向に直交する幅方向への縮み率が30%以下である、伸縮材。 A core layer comprising an elastomer;
At least one skin layer having a tensile yield stress lower than the core layer in at least one direction;
With
In at least one direction,
An elastic material having a tensile stress at 300% elongation of 110% or less of the tensile yield stress of the skin layer and a shrinkage ratio in the width direction perpendicular to the elongation direction at 200% elongation of 30% or less. - 前記コア層の両主面上にそれぞれ前記スキン層が設けられている、請求項8に記載の伸縮材。 The elastic material according to claim 8, wherein the skin layers are respectively provided on both main surfaces of the core layer.
- 前記コア層の厚みが、前記スキン層の厚み以上である、請求項8又は9に記載の伸縮材。 The elastic material according to claim 8 or 9, wherein the thickness of the core layer is equal to or greater than the thickness of the skin layer.
- 前記コア層の厚みT1に対する前記スキン層の厚みT2の比T2/T1が、0.1以上1.0以下である、請求項8~10のいずれか一項に記載の伸縮材。 The stretchable material according to any one of claims 8 to 10, wherein a ratio T 2 / T 1 of the thickness T 2 of the skin layer to the thickness T 1 of the core layer is 0.1 or more and 1.0 or less. .
- 前記比T2/T1が、0.2以上0.5以下である、請求項11に記載の伸縮材。 The stretchable material according to claim 11, wherein the ratio T 2 / T 1 is 0.2 or more and 0.5 or less.
- 請求項1~12のいずれか一項に記載の伸縮材の前記スキン層が塑性変形した構造を有する伸縮部と、前記伸縮材の層構造が維持された形状保持部と、を備える、伸縮性部材。 An elastic property comprising: an elastic part having a structure in which the skin layer of the elastic material according to any one of claims 1 to 12 is plastically deformed; and a shape holding part in which the layer structure of the elastic material is maintained. Element.
- 請求項1~12のいずれか一項に記載の伸縮材の少なくとも一部を延伸させて、前記スキン層の少なくとも一部を塑性変形させる工程を備える、伸縮性部材の製造方法。 A method for producing a stretchable member, comprising a step of stretching at least a portion of the stretchable material according to any one of claims 1 to 12 and plastically deforming at least a portion of the skin layer.
- 前記工程において、前記スキン層の一部を塑性変形させて、前記伸縮材の層構造が維持された形状保持部と、前記スキン層が塑性変形した伸縮部と、を形成する、請求項14に記載の製造方法。 In the step, a part of the skin layer is plastically deformed to form a shape holding portion in which a layer structure of the stretchable material is maintained, and a stretchable portion in which the skin layer is plastically deformed. The manufacturing method as described.
- 請求項13に記載の伸縮性部材を備える衣料製品。 A clothing product comprising the stretchable member according to claim 13.
- エラストマーを含むコア層と、
少なくとも一方向において前記コア層より高い10%引張応力を有する少なくとも一つのスキン層と、
を備え、
一方向に300%伸長して前記スキン層を塑性変形させた伸縮部を形成したとき、当該伸縮部は、160%伸長させて40℃で1時間保持する伸長試験によるひずみが25%以下である、
伸縮材。 A core layer comprising an elastomer;
At least one skin layer having a 10% tensile stress higher than the core layer in at least one direction;
With
When a stretchable portion is formed by stretching 300% in one direction and plastically deforming the skin layer, the stretchable portion has a strain of 25% or less by stretching 160% and holding at 40 ° C. for 1 hour. ,
Elastic material. - 前記コア層の両主面上にそれぞれ前記スキン層が設けられている、請求項17に記載の伸縮材。 The elastic material according to claim 17, wherein the skin layers are provided on both main surfaces of the core layer.
- 前記コア層の厚みが、前記スキン層の厚み以上である、請求項17又は18に記載の伸縮材。 The elastic material according to claim 17 or 18, wherein a thickness of the core layer is equal to or greater than a thickness of the skin layer.
- 前記コア層の厚みT1に対する前記スキン層の厚みT2の比T2/T1が、0.1以上1.0以下である、請求項17~19のいずれか一項に記載の伸縮材。 The stretch material according to any one of claims 17 to 19, wherein a ratio T 2 / T 1 of the thickness T 2 of the skin layer to the thickness T 1 of the core layer is 0.1 or more and 1.0 or less. .
- 少なくとも一方向において、300%伸長時の引張応力が前記スキン層の引張降伏応力の110%以下である、請求項17~20のいずれか一項に記載の伸縮材。 The elastic material according to any one of claims 17 to 20, wherein in at least one direction, the tensile stress at 300% elongation is 110% or less of the tensile yield stress of the skin layer.
- エラストマーを含むコア層と、
少なくとも一方向において前記コア層より高い10%引張応力を有する少なくとも一つのスキン層と、
を備え、
前記エラストマーが、分岐状ポリマーを含有する、
伸縮材。 A core layer comprising an elastomer;
At least one skin layer having a 10% tensile stress higher than the core layer in at least one direction;
With
The elastomer contains a branched polymer;
Elastic material. - 前記エラストマーが、直鎖状ポリマーを更に含有する、請求項22に記載の伸縮材。 The elastic material according to claim 22, wherein the elastomer further contains a linear polymer.
- 前記コア層の両主面上にそれぞれ前記スキン層が設けられている、請求項22又は23に記載の伸縮材。 The stretchable material according to claim 22 or 23, wherein the skin layers are provided on both main surfaces of the core layer.
- 前記コア層の厚みが、前記スキン層の厚み以下である、請求項22~24のいずれか一項に記載の伸縮材。 The elastic material according to any one of claims 22 to 24, wherein a thickness of the core layer is equal to or less than a thickness of the skin layer.
- 前記コア層の厚みT1に対する前記スキン層の厚みT2の比T2/T1が、0.1以上1.0以下である、請求項22~25のいずれか一項に記載の伸縮材。 The stretchable material according to any one of claims 22 to 25, wherein a ratio T 2 / T 1 of the thickness T 2 of the skin layer to the thickness T 1 of the core layer is 0.1 or more and 1.0 or less. .
- 少なくとも一方向において、300%伸長時の引張応力が前記スキン層の引張降伏応力の110%以下である、請求項22~26のいずれか一項に記載の伸縮材。 The elastic material according to any one of claims 22 to 26, wherein the tensile stress at 300% elongation is 110% or less of the tensile yield stress of the skin layer in at least one direction.
- 請求項17~27のいずれか一項に記載の伸縮材の前記スキン層が塑性変形した構造を有する伸縮部と、
前記伸縮材の層構造が維持された形状保持部と、
を備える、伸縮性部材。 An elastic part having a structure in which the skin layer of the elastic material according to any one of claims 17 to 27 is plastically deformed;
A shape holding portion in which the layer structure of the stretchable material is maintained;
A stretchable member. - 請求項17~27のいずれか一項に記載の伸縮材の少なくとも一部を延伸させて、前記スキン層の少なくとも一部を塑性変形させる工程を備える、伸縮性部材の製造方法。 A method for producing a stretchable member, comprising a step of stretching at least a portion of the stretchable material according to any one of claims 17 to 27 and plastically deforming at least a portion of the skin layer.
- 前記工程において、前記スキン層の一部を塑性変形させて、前記伸縮材の層構造が維持された形状保持部と前記スキン層が塑性変形した伸縮部とを形成する、請求項29に記載の製造方法。 30. The step according to claim 29, wherein in the step, a part of the skin layer is plastically deformed to form a shape holding portion in which a layer structure of the stretchable material is maintained and a stretchable portion in which the skin layer is plastically deformed. Production method.
- 請求項17~27のいずれか一項に記載の伸縮材、又は請求項28に記載の伸縮性部材を備える、衣料製品。 A clothing product comprising the elastic material according to any one of claims 17 to 27 or the elastic member according to claim 28.
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BR112018003895A BR112018003895A2 (en) | 2015-08-27 | 2016-08-26 | extensible material, extensible element, and article of clothing |
KR1020187005918A KR20180044299A (en) | 2015-08-27 | 2016-08-26 | Elastic, elastic and clothing products |
JP2017536495A JP6807316B2 (en) | 2015-08-27 | 2016-08-26 | Elastic materials, elastic members and clothing products |
CN201680049632.4A CN108136743B (en) | 2015-08-27 | 2016-08-26 | Stretch material, stretch member, and article of clothing |
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WO2021157724A1 (en) * | 2020-02-07 | 2021-08-12 | タキロンシーアイ株式会社 | Stretchable film |
WO2024202796A1 (en) * | 2023-03-29 | 2024-10-03 | タキロンシーアイ株式会社 | Stretch film |
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Also Published As
Publication number | Publication date |
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CN108136743A (en) | 2018-06-08 |
JP6807316B2 (en) | 2021-01-06 |
BR112018003895A2 (en) | 2018-09-25 |
JPWO2017034030A1 (en) | 2018-06-14 |
KR20180044299A (en) | 2018-05-02 |
CN108136743B (en) | 2021-09-17 |
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