CN217416456U - Shoe box - Google Patents

Shoe box Download PDF

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Publication number
CN217416456U
CN217416456U CN202220103978.0U CN202220103978U CN217416456U CN 217416456 U CN217416456 U CN 217416456U CN 202220103978 U CN202220103978 U CN 202220103978U CN 217416456 U CN217416456 U CN 217416456U
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plate
panel
hinge
shaft
shoe box
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CN202220103978.0U
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Chinese (zh)
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徐伟鑫
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Individual
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Individual
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Abstract

The utility model discloses a shoe box, which comprises a frame, a front panel and a back panel; the front and rear panels are matched with the front opening and the rear opening of the frame piece; the frame piece comprises a pair of first side plates and a pair of second side plates, the second side plates comprise first plates and second plates, and the first plates and the second plates and the first side plates and the second side plates are hinged to enable the frame piece to be capable of being pivoted and folded. The utility model discloses a shoes box, easily make, the equipment is convenient.

Description

Shoe box
Technical Field
The utility model belongs to the technical field of accomodate the utensil, concretely relates to a shoes box for accomodating shoes.
Background
Shoes need often be used in people's daily life, need wash when changing seasons and dry the back and accomodate, and the tradition mode is accomodate in the shoe cabinet, and this mode can not satisfy the requirement that people accomodate and demonstrate to shoes nowadays.
Chinese utility model patent CN212501934U discloses a folding shoes box, and it includes bottom plate, apron and door plant, and the both ends of bottom plate are articulated to have curb plate, the rear side that can overturn from top to bottom to articulate has the backplate that can overturn from top to bottom, and apron detachably cooperates on curb plate and backplate in order to form the frame of rectangle to supply the door plant joint. Although the shoe box can realize the folding function, the structure is relatively complex and is not beneficial to manufacturing, and the folding process also needs a plurality of steps to be completed.
Therefore, there is a need for a shoe box that is easy to assemble and can be folded when not needed to facilitate storage.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a shoe box which is easy to manufacture and convenient to assemble.
In order to achieve the above purpose, the utility model adopts the following scheme:
a shoe box comprises a frame piece, a front panel and a rear panel; the frame piece is provided with four surfaces which are sequentially connected and arranged, a front opening and a rear opening, and the front panel and the rear panel are respectively matched with the front opening and the rear opening.
The frame piece comprises a pair of first side plates and a pair of second side plates which are oppositely arranged respectively, and the first side plates and the second side plates are hinged, so that the first side plates and the second side plates can be relatively pivoted to change into different angles and form different matching states. Namely, the two first side plates are oppositely arranged, and the two second side plates are oppositely arranged.
The second side plate comprises a first plate and a second plate which are hinged with each other, so that different matching states can be formed through relative pivoting between the first plate and the second plate.
The first plate and the second plate are pivoted to be folded between the two first side plates to form a folded state of the shoe box; the first plate and the second plate are pivoted and unfolded and are fixed by the front panel and the rear panel to form an unfolded state of the shoe box.
Preferably, a first connecting piece is arranged on the front panel or the rear panel. The first connecting piece comprises a first connecting arm and a notch formed on the first connecting arm, and the notch is arranged through the first connecting arm or not; correspondingly, a third connecting piece matched with the first connecting piece is arranged at the front opening or the rear opening of the frame piece, the second connecting piece comprises a second connecting arm, and a convex block corresponding to the notch is arranged on the second connecting arm; the first connecting arm and the second connecting arm are matched to enable the lug to be matched in the notch so as to connect the front panel or the rear panel and the frame piece.
Preferably, a second connecting piece is arranged on the front panel or the rear panel, and the second connecting piece comprises a plurality of clamping blocks arranged on the front panel or the rear panel and a plurality of bayonets formed on the clamping blocks. In the unfolded state, the front end or the rear end of the second side plate is matched in the bayonet so as to fix the second side plate through the second connecting piece without pivoting. Wherein, each bayonet can be wholly or partially positioned on the same straight line.
Preferably, the first connecting arm is provided to protrude along an inner surface of the front panel or the rear panel.
Preferably, the first plate and the second plate are hinged to each other through a first hinge and a second hinge to allow relative pivoting therebetween, and the first hinge and the second hinge are formed as a hinge mechanism. The first hinge includes an end block and a shaft, and the second hinge includes a boss that engages the shaft, the shaft engaging in the boss to provide an articulated engagement between the first and second plates.
Preferably, the shaft sleeve is semicircular or U-shaped, a first shaft sleeve end and a second shaft sleeve end are respectively formed on two sides of the shaft sleeve, and a shaft cavity for matching the shaft rod is formed between the first shaft sleeve end and the second shaft sleeve end.
Preferably, the shaft sleeve further includes a limiting member disposed on the first shaft sleeve end and/or the second shaft sleeve end to limit the shaft rod after the shaft rod is fitted in the shaft cavity, so that the shaft rod is fitted in the shaft cavity without coming off.
Preferably, the limiting member is further provided with a guide surface, and the guide surface is an inclined surface or a curved surface.
Preferably, a gap is further provided between the shaft and the first plate or the second plate.
Preferably, the first side plate and the second side plate are respectively provided with a first hinge and a second hinge, so that the first side plate and the second side plate are hinged and the hinge structure is the same as the hinge structure between the first plate and the second plate.
Preferably, the shaft rod is arranged on the first side plate, and the shaft sleeve is arranged on the second side plate. The upper side and the lower side of the second side plate are respectively provided with a second hinge part, and the two sides of the first side plate are respectively provided with a first hinge part. And the second hinge piece is arranged on the inner side of the hinged end of the second side plate, and an arc-shaped block is formed at the outer end of the hinged end.
Preferably, the front panel comprises a panel frame and a panel, the panel frame is matched at the front opening of the frame piece, and the panel is pivotally matched on the panel frame so as to put in or take out the shoes by opening or closing the panel, thereby forming the panel opening state.
Preferably, the first plate member and the second plate member have the same width. Preferably, the first plate and the second plate are identical in structure, so that manufacturing is facilitated.
Preferably, the first plate and the second plate are connected by two sets of hinge mechanisms, and the two sets of hinge mechanisms are arranged in opposite directions.
Preferably, at least one of the frame, the front panel and the rear panel is made of PP, PET or HIPS. More preferably, at least one is transparent or translucent.
The shoe box of the utility model can be formed into a three-dimensional shape with a cubic shape as a whole, so as to be beneficial to stacking and placing; whether it is a right angle or a rounded corner does not affect its stacking. And, having an openable panel allows a user to easily take and put shoes from and into any one of the shoe boxes even in a stacked state.
The utility model discloses a shoe box can fold its volume when not using and reduce more than 90%, forms to the lamellar structure in order to do benefit to and accomodate, also can expand very conveniently when needing to use, and expand the back cooperation firm. In addition, the side surface of the shoe box is preferably formed into a side plate by matching two plate parts with the same shape and structure in different assembly modes, so that the manufacturing cost can be reduced.
Furthermore, the utility model discloses a separation can also be disassembled to third connecting piece and first connecting piece when not using to the shoes box to panel and frame separation around making, folding to accomodate this shoes box.
Drawings
FIG. 1 is a schematic perspective view of a shoe box according to an embodiment of the present invention;
FIG. 2 is an exploded view of the embodiment of FIG. 1 and a partially enlarged view thereof;
FIG. 3 is a schematic structural view of a frame member of the embodiment of FIG. 1;
FIG. 4 is an exploded view of the frame member of FIG. 3;
FIG. 5 is a schematic view of the first plate member of FIG. 4 and a partially enlarged view thereof;
FIG. 6 is a schematic view of the structure of the door panel of the embodiment of FIG. 1 and a partially enlarged view thereof;
FIG. 7 is a schematic view showing an opened state of a front panel of a shoe box according to another embodiment of the present invention, which has the same main structure as the first embodiment except for a different shape on a back panel;
fig. 8 is a schematic view showing a folded state of the frame member of the shoe box of the present invention.
Wherein the terms of the respective reference signs correspond to the following:
the frame member 11, the front panel 12, the rear panel 13, the panel frame 12a, the panel 12b, the first side panel 111, the second side panel 112, the first panel 113, the second panel 114, the third connector 120, the first connector 130, the second connector 140, the second connecting arm 121, the first connecting arm 122, the protrusion 131, the notch 132, the latch 141, the bayonet 142, the shaft cavity 201, the arc-shaped block 202, the hinge end 203, the first hinge 210, the second hinge 220, the end block 211, the shaft rod 212, the notch 213, the shaft sleeve 221, the first shaft sleeve end 222, the second shaft sleeve end 223, the limiting member 224, and the guide surface 225.
Detailed Description
In order to better understand the invention for those skilled in the art and to define the scope of the invention more clearly, the invention will be described in detail below with respect to certain specific embodiments of the invention. It should be noted that the following description is only a few examples of the present invention, and the specific and direct description of the related structures is only for the convenience of understanding the present invention, and the specific features do not naturally and directly limit the scope of the present invention. Conventional alternatives and substitutions made by those skilled in the art in light of the teachings of the present disclosure should be considered as within the scope of the present disclosure.
A shoe box is used for placing shoes and storing or displaying the shoes, and a plurality of shoe boxes can be stacked mutually.
As shown in fig. 1, the shoe box has an overall cubic shape having six surfaces. The length, width and height ratio of the shoe box is not limited to the ratio shown in fig. 1, and can be adjusted as required, for example, the length, width and height are set to be equal to present a cubic shape, or other specific designs, but not limited thereto.
As shown in fig. 2, the shoe box is integrally formed of three parts, i.e., a frame member 11, a front panel 12 and a rear panel 13. Wherein the frame member 11 has four surfaces sequentially arranged to form a front opening and a rear opening at the front and rear thereof, respectively, and the front panel 12 and the rear panel 13 are fitted to the front opening and the rear opening, respectively, to form a complete shoe box structure as shown in fig. 1.
In this embodiment, the front panel 12 is further composed of a panel frame 12a and a panel 12b, the panel frame 12a is fitted to the front opening of the frame 11, and the panel 12b is pivotally fitted to the panel frame 12a by means of a pivot shaft and a pivot hole (not shown) as shown in fig. 7, so that shoes can be put in or taken out by opening or closing the panel 12b, resulting in the panel open state as shown in fig. 7.
As shown in fig. 3, the frame member 11 is composed of two pairs of side plates, i.e., a first side plate 111 disposed opposite to the first side plate and a second side plate 112 disposed opposite to the first side plate. Wherein, the two first side plates 111 are integral plates, and the two second side plates 112 are foldable plates; the first side plate 111 and the second side plate 112 are hingedly disposed.
As shown in fig. 4, the second side plate 112 includes a first plate 113 and a second plate 114, and the first plate 113 and the second plate 114 are also hinged to each other, so that the first plate 113 can be folded or unfolded with respect to the second plate 114. The first plate 113 and the second plate 114 are hinged to each other via a first hinge 210 and a second hinge 220. The first hinge 210 and the second hinge 220 are formed as a hinge mechanism that is hingedly disposed between the two panels to pivotally fold or unfold.
Preferably, in this embodiment, the length, the width, and the thickness of the first plate 113 and the second plate 114 are the same, and the first plate 113 and the second plate 114 are connected by two sets of hinge mechanisms, and the two sets of hinge mechanisms are arranged in opposite directions, so that the first plate 113 and the second plate 114 have the same structure, and the same component can be manufactured by using one mold, and only the installation direction and the installation position during assembly are different, so as to simplify the manufacturing process and reduce the cost.
As shown in fig. 5, the first hinge 210 includes an end block 211 and a shaft 212, and the end block 211 has two pieces and is fixedly coupled to or integrally formed with the first plate 113 or the second plate 114. A gap 213 is also provided between the shaft 212 and the first plate 113 or the second plate 114.
As shown in fig. 5, the second hinge 220 includes a bushing 221 having a semicircular or U-shaped shape to be engaged with the shaft 212. A first sleeve end 222 and a second sleeve end 223 are formed on two sides of the sleeve 221, one of the first sleeve end 222 and the second sleeve end 223 is connected to or integrally formed with the first plate 113 or the second plate 114, and the other one is left empty. A shaft cavity 201 is formed between the two sleeve ends for the shaft 212 to fit in. The shaft sleeve 221 further includes a limiting member 224, and the limiting member 224 is disposed on the first shaft sleeve end 222 and/or the second shaft sleeve end 223 to limit the shaft 212 after the shaft 212 is fitted in the shaft cavity 201, so that the shaft 212 is fitted in the shaft cavity 201 and cannot be disengaged.
Preferably, the retaining member 224 is further provided with a guiding surface 225, which is a slant surface or a curved surface, so that the shaft 212 can be more conveniently fitted into the shaft cavity 201 by the guiding action of the slant surface or the curved surface when the shaft 212 is fitted into the shaft cavity 201. Meanwhile, after the shaft 212 is fitted, the shaft sleeve 221 is restored to its initial state due to its material and structural characteristics, so that the shaft 212 is firmly retained therein, thereby forming a stable hinge relationship.
As shown in fig. 4, in the present embodiment, the first plate 113 and the second plate 114 of each second side plate 112 are connected by two hinge mechanisms to form a hinge fit therebetween. And the two hinge mechanisms are arranged in opposite directions; that is, the first hinge of one hinge structure is disposed on the first plate 113, the second hinge is disposed on the second plate 114, the first hinge of the other hinge structure is disposed on the second plate 114, and the second hinge is disposed on the first plate 113.
In addition, in the present embodiment, the hinge structure formed by the first hinge 210 and the second hinge 220 is not only disposed between the two plates to allow the second side plate 112 to be hingably disposed from the middle portion thereof, but also can be used between the first side plate 111 and the second side plate 112 to allow the first side plate 111 and the second side plate 112 to be hingably disposed.
When the folding is required, after the front panel 12 and the rear panel 13 are removed, the middle position of the second side panel 112 is pushed inward, so that the second side panel 112 is folded inward, and a frame folding state that the two second side panels 112 are folded between the two first side panels 111 is formed. After folding, the thickness of the frame member is approximately equal to three times the thickness of the side plates (the first side plate 111 and the second side plate 112 are substantially the same in thickness), which is significantly reduced relative to the thickness in its unfolded state.
As shown in fig. 4 and 5, in the present embodiment, the second side plate 112 is provided with second hinges 220 at upper and lower sides thereof, and the first side plate 111 is provided with first hinges at two sides thereof. And, the second hinge member 220 is disposed inside the hinged end 203 of the second side plate 112, and the outer end of the hinged end 203 is formed with an arc-shaped block 202.
As shown in fig. 6, a first connecting member 130 and a second connecting member 140 are disposed on the front panel 12 or the rear panel 13 for connecting and matching the front and rear panels with the frame member.
The first connecting member 130 includes a first connecting arm 131 and a notch 132 formed on the first connecting arm 131, and the notch 132 is disposed through the first connecting arm 131 or not. And, the first connecting arm 131 is convexly disposed along the inner surface of the front panel 12 or the rear panel 13, so that it has a certain elasticity to facilitate the engagement.
As shown in fig. 3, a third connecting member 120 capable of being engaged with the first connecting member 130 is disposed at the front opening or the rear opening of the frame member 11, the third connecting member 120 includes a second connecting arm 121, and a protrusion 122 capable of corresponding to the notch 132 is disposed on the second connecting arm 121. When the front panel 12 or the rear panel 13 is fitted at the front opening or the rear opening of the frame member 11, the first connecting arm 131 is engaged with the second connecting arm 121 so that the projection 122 is engaged in the recess 132, and a connection limit relationship is formed so that the front and rear panels are firmly connected with the frame member.
In the present embodiment, although the protrusion 122 is disposed on the frame member 11 and the recess 132 is disposed on the front and rear panels, the opposite arrangement is also feasible.
As shown in fig. 4, the second connector 140 includes a plurality of latch blocks 141 disposed on the front panel 12 or the rear panel 13, and a plurality of notches 142 formed on the latch blocks 141. As shown in fig. 3, in the unfolded state, the second side plate 112 of the frame 11 is formed or substantially formed as a plane, so that all the bayonets 142 of the second connecting member 140 are located on the same line to be engaged with the front and rear end surfaces of the second side plate 112.
Thus, in the unfolded state, the front or rear end of the second side plate 112 of the frame member 11 is fitted into the bayonet 142 so that it is fixed by the second connecting member 140, and the second side plate 112 cannot freely rotate, resulting in a firm unfolded state.
Although the bayonets 142 are located at the same position in the present embodiment to form the second side plate 112 into a planar shape in the expanded state, the upper and lower sides thereof may be located on different straight lines to form the second side plate 112 with a "<" shape, which also plays a role of fixing in the expanded state.
In the utility model, the shoe box has a cubic overall shape, and can be mutually stacked and vertically matched to form a cabinet-shaped combination structure. At least one of the frame 11, the front panel 12 and the rear panel 13 is made of a transparent material or a semitransparent material, for example, in one embodiment, the frame 11 and the panel 12b are made of transparent PET, and the panel frame 12a and the rear panel 13 are made of PP (opaque); or in another embodiment, the panel 12b is transparent PET or transparent PP, and the panel frame 12a, the frame member 11 and the rear panel 13 are HIPS (high impact polystyrene), opaque HIPS; or at least one of the shoes is provided with a color so as to be convenient for looking at the shoes in the shoe box and have better design feeling as a whole.

Claims (10)

1. A shoe box, which comprises a frame piece (11), a front panel (12) and a back panel (13); the frame piece (11) is provided with a plurality of surfaces which are sequentially connected and arranged, a front opening and a rear opening, and the front panel (12) and the rear panel (13) are respectively matched with the front opening and the rear opening;
the frame piece (11) comprises a pair of first side plates (111) and a pair of second side plates (112) which are oppositely arranged respectively, and the first side plates (111) and the second side plates (112) are hinged;
the second side plate (112) comprises a first plate (113) and a second plate (114) which are hinged with each other; the first plate (113) and the second plate (114) are pivoted to be folded between the two first side plates (111) to form a folded state of the shoe box; the first plate (113) and the second plate (114) are pivoted and unfolded and are fixed by the front panel (12) and the rear panel (13) to form an unfolded state of the shoe box.
2. Shoe box according to claim 1, wherein a first connector (130) or a second connector (140) is provided on the front panel (12) or the rear panel (13);
the first connecting piece (130) comprises a first connecting arm (131) and a notch (132) formed on the first connecting arm (131), and the notch (132) is arranged through the first connecting arm (131) or not; a third connecting piece (120) matched with the first connecting piece (130) is arranged at the front opening or the rear opening of the frame piece (11), the third connecting piece (120) comprises a second connecting arm (121), and a convex block (122) corresponding to the notch (132) is arranged on the second connecting arm (121); the first connecting arm (131) and the second connecting arm (121) are matched to enable the lug (122) to be matched in the notch (132) so as to connect the front panel (12) or the rear panel (13) and the frame piece (11);
the second connecting piece (140) comprises a plurality of clamping blocks (141) arranged on the front panel (12) or the rear panel (13) and a plurality of bayonets (142) formed on the clamping blocks (141); the front end or the rear end of the second side plate (112) is matched in the bayonet (142) in the unfolding state so as to fix the second side plate (112) through the second connecting piece (140).
3. Shoe box according to claim 2, wherein the first connecting arm (131) is provided convexly along the inner surface of the front panel (12) or the rear panel (13).
4. The shoe box according to claim 2, characterized in that between the first plate (113) and the second plate (114) is hingedly arranged via a first hinge (210) and a second hinge (220), the first hinge (210) and the second hinge (220) forming a hinge mechanism; the first hinge (210) comprises an end block (211) and a shaft (212), the second hinge (220) comprises a bushing (221) cooperating with the shaft (212), the shaft (212) is fitted in the bushing (221) to enable a hinged cooperation between the first plate (113) and the second plate (114).
5. The shoe box according to claim 4, wherein the shaft sleeve (221) is semicircular or U-shaped, a first shaft sleeve end (222) and a second shaft sleeve end (223) are respectively formed at two sides of the shaft sleeve (221), and a shaft cavity (201) for the shaft rod (212) to be matched is formed between the first shaft sleeve end (222) and the second shaft sleeve end (223);
the bushing (221) further comprises a limiting member (224), wherein the limiting member (224) is arranged on the first bushing end (222) and/or the second bushing end (223) to limit the shaft rod (212) after the shaft rod (212) is fitted in the shaft cavity (201).
6. The shoe box according to claim 5, characterized in that the retaining member (224) is further provided with a guiding surface (225) which is a slant surface or a curved surface; a gap (213) is also arranged between the shaft rod (212) and the first plate (113) or the second plate (114).
7. The shoe box according to any of claims 4 to 6, wherein a first hinge (210) and a second hinge (220) are provided on the first side plate (111) and the second side plate (112), respectively, so that both are hingedly arranged.
8. The shoe box according to claim 7, wherein the shaft (212) is provided on the first side plate (111) and the bushing (221) is provided on the second side plate (112);
the upper side and the lower side of the second side plate (112) are respectively provided with a second hinge piece (220), and the two sides of the first side plate (111) are respectively provided with a first hinge piece (210); the second hinge piece (220) is arranged on the inner side of the hinged end (203) of the second side plate (112), and an arc-shaped block (202) is formed at the outer end of the hinged end (203).
9. The shoe box according to any of claims 1 to 6, characterized in that said front panel (12) comprises a panel frame (12a) and a panel (12b), the panel frame (12a) fitting at the front mouth of the frame member (11), the panel (12b) pivotally fitting on the panel frame (12 a).
10. A shoe box according to any of claims 4-6, characterized in that the first plate (113) and the second plate (114) have the same width;
the first plate (113) and the second plate (114) are connected by two groups of hinge mechanisms, and the arrangement directions of the two groups of hinge mechanisms are opposite; at least one of the frame piece (11), the front panel (12) and the rear panel (13) is made of PP, PET or HIPS materials, and at least one of the frame piece, the front panel and the rear panel is transparent or semitransparent.
CN202220103978.0U 2022-01-14 2022-01-14 Shoe box Active CN217416456U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220103978.0U CN217416456U (en) 2022-01-14 2022-01-14 Shoe box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220103978.0U CN217416456U (en) 2022-01-14 2022-01-14 Shoe box

Publications (1)

Publication Number Publication Date
CN217416456U true CN217416456U (en) 2022-09-13

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Application Number Title Priority Date Filing Date
CN202220103978.0U Active CN217416456U (en) 2022-01-14 2022-01-14 Shoe box

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20240335032A1 (en) * 2023-04-06 2024-10-10 Shanghai Real Trading CO., LTD. Foldable Storage Cabinet

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20240335032A1 (en) * 2023-04-06 2024-10-10 Shanghai Real Trading CO., LTD. Foldable Storage Cabinet

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