CN216942196U - Antifouling antiviral thermal fabric - Google Patents
Antifouling antiviral thermal fabric Download PDFInfo
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- CN216942196U CN216942196U CN202220372683.3U CN202220372683U CN216942196U CN 216942196 U CN216942196 U CN 216942196U CN 202220372683 U CN202220372683 U CN 202220372683U CN 216942196 U CN216942196 U CN 216942196U
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Abstract
The utility model discloses an antifouling antiviral warm-keeping fabric which comprises a wear-resistant fabric layer, wherein an antifouling mechanism is arranged on the left side of the wear-resistant fabric layer. This antifouling antiviral cold-proof surface fabric, through the wear-resisting precoat, mutually support between the antifouling precoat of dacron waterproof precoat and the antifouling precoat isotructure of teflon, can improve the holistic stand wear and tear of surface fabric and waterproof performance through the wear-resisting precoat and the waterproof precoat of dacron, improve greaseproof through the antifouling precoat of teflon, it is waterproof, antifouling class of characteristic, so just, the holistic life of surface fabric has been improved, through the non-woven fabrics precoat, the activated carbon fiber precoat with melt mutually support between the fabric isotructure of spouting the cloth precoat, can adsorb impurity etc. in to the air through the activated carbon fiber, can improve filterability through melt-blown cloth, shielding nature, adiabaticity and oil absorption nature, thereby just reached antiviral purpose.
Description
Technical Field
The utility model relates to the technical field of fabrics, in particular to an antifouling antiviral warm-keeping fabric.
Background
The fabric is a material for making clothes, is one of three elements of the clothes, can explain the style and the characteristics of the clothes, directly controls the expression effects of the color and the shape of the clothes, is various in the world of the clothes, and is developed day by day, the effects of the fabric are also diversified, and the fabric in the prior art has a single composition structure, poor antifouling and antiviral effects and low heat preservation and comfort.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an antifouling antiviral warm-keeping fabric, which aims to solve the problems that the prior art has a single composition structure and has poor antifouling and antiviral effects.
In order to achieve the purpose, the utility model provides the following technical scheme: an antifouling antiviral warm keeping fabric comprises a wear-resistant fabric layer, wherein an antifouling mechanism is arranged on the left side of the wear-resistant fabric layer;
the antifouling mechanism comprises a terylene waterproof fabric layer and a Teflon antifouling fabric layer;
the waterproof precoat of dacron is located the left side of wear-resisting precoat, and the waterproof precoat of dacron and wear-resisting precoat looks rigid coupling, the fixed antifouling precoat of teflon that is provided with in left side of the waterproof precoat of dacron.
Preferably, the right side of the wear-resistant fabric layer is fixedly connected with a non-woven fabric layer.
Preferably, a protection mechanism is arranged on the right side of the non-woven fabric layer;
the protection mechanism comprises an activated carbon fiber fabric layer and a melt-blown fabric layer;
the activated carbon fiber fabric layer is positioned on the right side of the non-woven fabric layer and fixedly connected with the non-woven fabric layer, and the melt-blown fabric layer is fixedly arranged on the right side of the activated carbon fiber fabric layer.
Preferably, a warm-keeping mechanism is arranged on the right side of the melt-blown fabric layer;
the warm-keeping mechanism comprises a pure cotton fabric layer and a flax moisture absorption fabric layer;
the left side of the pure cotton fabric layer is fixedly connected with the melt-blown fabric layer, and the right side of the pure cotton fabric layer is fixedly provided with a flax moisture-absorbing fabric layer.
Preferably, the moisture absorption and heating fiber fabric layer is fixedly connected to the right side of the flax moisture absorption fabric layer, so that the moisture absorption and heat preservation performance can be improved.
Compared with the prior art, the utility model has the beneficial effects that: according to the antifouling antiviral warm-keeping fabric, the wear-resisting fabric layer, the polyester waterproof fabric layer, the Teflon antifouling fabric layer and other structures are matched with each other, so that the wear resistance and the waterproof performance of the whole fabric can be improved through the wear-resisting fabric layer and the polyester waterproof fabric layer, and the oil resistance, the water resistance, the antifouling property and the like are improved through the Teflon antifouling fabric layer, so that the service life of the whole fabric is prolonged;
through the mutual matching of the structures of the non-woven fabric layer, the activated carbon fiber fabric layer, the melt-blown fabric layer and the like, impurities and the like in the air can be adsorbed through the activated carbon fibers, and the filterability, the shielding property, the heat insulation property and the oil absorption property can be improved through the melt-blown fabric, so that the aim of resisting virus is fulfilled;
through mutually supporting between structures such as the moisture absorption fiber precoat that generates heat, pure cotton precoat and the flax moisture absorption precoat, can improve the heat preservation effect through the pure cotton precoat, through the moisture absorption fiber precoat that generates heat and flax moisture absorption precoat improvement moisture absorption effect to more comfortable.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a front view of FIG. 1;
FIG. 3 is a schematic structural view of the wear-resistant fabric layer, the non-woven fabric layer and the polyester waterproof fabric layer in FIG. 2;
fig. 4 is a schematic structural diagram of the activated carbon fiber fabric layer, the pure cotton fabric layer and the flax moisture absorption fabric layer in fig. 2.
In the figure: 1. the anti-fouling fabric comprises a wear-resistant fabric layer, 2 an anti-fouling mechanism, 201 a polyester waterproof fabric layer, 202 a Teflon anti-fouling fabric layer, 3 a protection mechanism, 301 an activated carbon fiber fabric layer, 302 a melt-blown fabric layer, 4 a heat-preservation mechanism, 401 a pure cotton fabric layer, 402 a flax moisture-absorption fabric layer, 5 a non-woven fabric layer, 6 a moisture-absorption heating fiber fabric layer.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: an antifouling antiviral warm keeping fabric comprises a wear-resistant fabric layer 1, wherein the main material of the wear-resistant fabric layer 1 is polyamide fiber, the wear-resistant and stretch-resistant fabric has better wear resistance and stretch-resistant capability, the left side of the wear-resistant fabric layer 1 is provided with the antifouling mechanism 2, the antifouling mechanism 2 comprises a terylene waterproof fabric layer 201 and a Teflon antifouling fabric layer 202, the terylene waterproof fabric layer 201 is positioned on the left side of the wear-resistant fabric layer 1, the waterproof effect can be improved by the terylene waterproof fabric layer 201, the terylene waterproof fabric layer 201 is fixedly connected with the wear-resistant fabric layer 1, the left side of the terylene waterproof fabric layer 201 is fixedly provided with a Teflon antifouling fabric layer 202, the Teflon antifouling fabric layer 202 is made of polytetrafluoroethylene as a raw material, has the characteristics of oil resistance, water resistance, antifouling property and the like, therefore, the service life of the whole fabric is prolonged, and the right side of the wear-resistant fabric layer 1 is fixedly connected with a non-woven fabric layer 5.
Protection machanism 3 is installed on non-woven fabrics precoat 5's right side, protection machanism 3 includes activated carbon fiber precoat 301 and melt-blown fabric precoat 302, activated carbon fiber precoat 301 be located non-woven fabrics precoat 5's right side, can adsorb impurity etc. in the air through activated carbon fiber precoat 301, and activated carbon fiber precoat 301 and non-woven fabrics precoat 5 looks rigid coupling, activated carbon fiber precoat 301's fixed melt-blown fabric precoat 302 that is provided with in right side, can improve filterability through melt-blown cloth, shielding nature, thermal insulation and oil absorption, thereby just reached antiviral mesh.
The right side of the melt-blown fabric layer 302 is provided with the warm keeping mechanism 4, the warm keeping mechanism 4 comprises a pure cotton fabric layer 401 and a flax moisture absorption fabric layer 402, the left side of the pure cotton fabric layer 401 is fixedly connected with the melt-blown fabric layer 302, the warm keeping effect can be improved through the pure cotton fabric layer 401, the right side of the pure cotton fabric layer 401 is fixedly provided with the flax moisture absorption fabric layer 402, the flax moisture absorption fabric layer 402 is woven through flax fibers and has good moisture absorption and moisture conduction performance, the right side of the flax moisture absorption fabric layer 402 is fixedly connected with a moisture absorption and heat generation fiber fabric layer 6, the moisture absorption and heat generation fiber fabric layer 6 is made of wool fibers as a main material, the fabric can absorb gaseous water vapor nearby the fabric and then converts the water vapor into liquid, hot air is released during the conversion process, and thus clothes made of the warm keeping fabric can generate heat, thereby achieving better warm-keeping effect.
In this embodiment, when an operator needs to use an anti-fouling, anti-virus and warm-keeping fabric, firstly, the operator sets the polyester waterproof fabric layer 201 and the teflon anti-fouling fabric layer 202 on the left side of the wear-resistant fabric layer 1, so that the wear-resistant and waterproof performance of the whole fabric can be improved by matching the polyester waterproof fabric layer 201 with the wear-resistant fabric layer 1, meanwhile, the teflon anti-fouling fabric layer 202 is made of polytetrafluoroethylene as a raw material and has the characteristics of oil resistance, water resistance, fouling resistance and the like, so that the service life of the whole fabric is prolonged, then the non-woven fabric layer 5, the activated carbon fiber fabric layer 301 and the melt-blown fabric layer 302 are set on the right side of the wear-resistant fabric layer 1, so that impurities can be adsorbed by activated carbon fibers, the filterability, the shielding performance, the heat insulation performance and the oil absorption performance can be improved by melt-blown fabric, thereby the anti-virus purpose is achieved, and finally, the pure cotton fabric layer 401 is set on the right side of the melt-blown fabric layer 302, Flax moisture absorption precoat 402 and moisture absorption fibre precoat 6 can play better cold-proof effect like this through pure cotton precoat 401, can absorb the sweat through flax moisture absorption precoat 402 and moisture absorption fibre precoat 6, and then just improved the travelling comfort.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (5)
1. The utility model provides an antifouling antiviral cold-proof surface fabric, includes wear-resisting surface fabric layer (1), its characterized in that: an antifouling mechanism (2) is arranged on the left side of the wear-resistant fabric layer (1);
the antifouling mechanism (2) comprises a terylene waterproof fabric layer (201) and a Teflon antifouling fabric layer (202);
the dacron waterproof precoat (201) is located the left side of wear-resisting precoat (1), and dacron waterproof precoat (201) and wear-resisting precoat (1) looks rigid coupling, the fixed antifouling precoat of teflon (202) that is provided with in left side of dacron waterproof precoat (201).
2. The antifouling antiviral thermal fabric according to claim 1, characterized in that: the right side of the wear-resistant fabric layer (1) is fixedly connected with a non-woven fabric layer (5).
3. The antifouling antiviral thermal fabric according to claim 2, wherein: a protection mechanism (3) is arranged on the right side of the non-woven fabric layer (5);
the protection mechanism (3) comprises an activated carbon fiber fabric layer (301) and a melt-blown fabric layer (302);
the activated carbon fiber fabric layer (301) is located on the right side of the non-woven fabric layer (5), the activated carbon fiber fabric layer (301) is fixedly connected with the non-woven fabric layer (5), and the melt-blown fabric layer (302) is fixedly arranged on the right side of the activated carbon fiber fabric layer (301).
4. The antifouling antiviral thermal fabric according to claim 3, wherein: a warm-keeping mechanism (4) is arranged on the right side of the melt-blown fabric layer (302);
the warm-keeping mechanism (4) comprises a pure cotton fabric layer (401) and a flax moisture absorption fabric layer (402);
the left side of the pure cotton fabric layer (401) is fixedly connected with the melt-blown fabric layer (302), and the right side of the pure cotton fabric layer (401) is fixedly provided with a flax moisture-absorbing fabric layer (402).
5. The antifouling antiviral thermal fabric according to claim 4, wherein: the right side of the flax moisture-absorbing fabric layer (402) is fixedly connected with a moisture-absorbing heating fiber fabric layer (6).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220372683.3U CN216942196U (en) | 2022-02-23 | 2022-02-23 | Antifouling antiviral thermal fabric |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220372683.3U CN216942196U (en) | 2022-02-23 | 2022-02-23 | Antifouling antiviral thermal fabric |
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CN216942196U true CN216942196U (en) | 2022-07-12 |
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CN202220372683.3U Active CN216942196U (en) | 2022-02-23 | 2022-02-23 | Antifouling antiviral thermal fabric |
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- 2022-02-23 CN CN202220372683.3U patent/CN216942196U/en active Active
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