storage box

By incorporating the shaft into the core material of the storage box to determine the clips, edge clips, and strap fixing clips, the problem of the storage box's inability to arbitrarily change its opening and closing direction and accessory positions is solved, achieving both flexible use and improved aesthetics.

CN116847754BActive Publication Date: 2026-03-06金相勋
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-01-28
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing storage boxes cannot be easily changed in terms of opening and closing direction and accessory positions according to the type of items or user needs, resulting in inconvenience and a uniform form.

Method used

By incorporating a shaft into the core material of the storage box to determine the clips, edge clips, and strap fixing clips, users can select the rotating shaft and adjust the position of the accessories, enabling the storage box to open in multiple directions and be used flexibly.

Benefits of technology

It enables multi-directional opening of the storage box and flexible adjustment of the accessory positions, improving both ease of use and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to a storage box, characterized in that, in order to allow the user to freely determine and change the opening direction or the position of accessories according to the items to be stored or the purpose of use, it includes: a core material, provided along the edge of an outer body that forms the shape of the storage box in the form of a plate or a hollow box; and an axis-determining clip, which is connected in such a way that the core material respectively provided in adjacent outer bodies can pass through simultaneously; by connecting the axis-determining clip to at least one of the plurality of sides forming the core material, the outer body connected by means of the axis-determining clip can be rotated around the axis-determining clip and thereby open the storage box.
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Description

Technical Field

[0001] This invention relates to a storage box, and more particularly to a storage box with a set opening direction that can be arbitrarily transformed by the user according to the items to be stored or the purpose of use. Background Technology

[0002] Generally speaking, storage boxes are used for storing and managing items; bags or boxes can also be called storage boxes. As mentioned above, storage boxes are usually designed with the size or shape of the items to be stored in mind, and are designed with a partially closable mechanism for storing or retrieving items.

[0003] Regarding storage boxes that are designed to open and close, they are constructed to open and close in a predetermined direction. The direction of opening and closing cannot be changed according to the type of items or the user's needs. Therefore, users need to equip different storage boxes according to the items or their intended use.

[0004] In addition, the carrying straps for handheld storage boxes or the shoulder straps for shoulder-carried storage boxes are also equipped in a specified position when the storage boxes are made. Users cannot arbitrarily change the position of accessories such as carrying straps or shoulder straps as needed. Therefore, the same storage boxes will present a uniform usage form. Summary of the Invention

[0005] The present invention aims to solve the existing problems described above by providing a storage box whose opening direction or the position of its accessories can be freely determined and changed by the user according to the items to be stored or the purpose of use.

[0006] To achieve the objectives described above, the present invention provides a storage box with a configurable opening direction, comprising: a core material disposed along the edge of an outer body that forms the outer shape of the storage box in a plate-like or hollow box-like form; and an axis-determining clip disposed in such a manner that the core material disposed in adjacent outer bodies can pass through simultaneously; the axis-determining clip is disposed on at least one of a plurality of sides constituting the core material.

[0007] Furthermore, the shaft determining clip may include: a first through hole and a second through hole, formed along the length direction to allow core material mounted on one outer body and another adjacent outer body to pass through respectively; and a first insert hole and a second insert hole, formed along the width direction such that the first through hole and the second through hole are respectively connected to the outside; thereby being embedded and coupled into the core material through the first insert hole and the second insert hole.

[0008] Furthermore, the first and second embedding holes can be formed in a manner that faces the core material of one shape and the core material of another shape.

[0009] In addition, it may include: an edge clamp, which is attached to the core material portion without the attached axis clamp in a form that does not interfere with the rotation of the body whose shape is determined by the axis.

[0010] Furthermore, the core material is provided along the outer edge of the outer shape and may also include: a strap fixing clip, which is coupled in a manner that allows the core material of at least one of the adjacent outer shapes to pass through and can be used to fix the strap.

[0011] According to the present invention, the outer body connected by the axis determining clip can be rotated around the axis determining clip to open the storage box. Therefore, the user can select at least one of the multiple sides constituting the core material as the rotation axis for opening the storage box and connect it with the axis determining clip, thereby changing the opening direction according to the items to be stored or the purpose of use.

[0012] Furthermore, the core material portion without a connecting shaft can be exposed to the outside by using the edge clips, thus ensuring its aesthetics. Moreover, the position of the strap for the handheld or shoulder-carrying storage box can be freely determined by fixing the clips with straps, thereby improving its ease of use. Attached Figure Description

[0013] Figure 1 This is an exploded perspective view of the storage box of the present invention according to the first embodiment.

[0014] Figure 2 This is a perspective view of the storage box of the present invention according to the first embodiment being combined.

[0015] Figure 3 This is an illustrative diagram used to show that the storage box of the present invention according to the first embodiment can be opened in multiple directions.

[0016] Figure 4 This is a perspective view illustrating the structure of the shaft determining clip, the edge binding clip, and the strap fixing clip of the storage box applicable to the present invention.

[0017] Figure 5 This is an illustrative diagram showing the state in which the shaft fixing clip is attached to the storage box of the present invention according to the first embodiment.

[0018] Figure 6 This is an illustrative diagram showing that the shaft determining clip, the edge clip, and the strap fixing clip can be incorporated into the storage box of the present invention according to the first embodiment.

[0019] Figure 7 This is an illustrative diagram showing the state in which the edge-binding clip and the strap fixing clip are attached to the storage box of the present invention according to the first embodiment.

[0020] Figure 8 This is a perspective view illustrating the state in which the shaft-determining clip, the edge-binding clip, and the strap-fixing clip are engaged in a storage box according to the invention of the first embodiment.

[0021] Figure 9 This is an exploded perspective view of the configuration for assembling the storage box of the present invention according to the second embodiment.

[0022] Figure 10 This is a perspective view illustrating a portion of the storage box of the present invention according to the second embodiment in an assembled state.

[0023] Figure 11 This is an illustrative diagram showing the state of rotation of an outer body in a storage box according to the second embodiment of the present invention, with a portion of it assembled.

[0024] [Symbol Explanation]

[0025] 10: External shape

[0026] 20: Ribbon

[0027] 100: core material

[0028] 200: The shaft determines the clamping plate.

[0029] 210: First through hole

[0030] 220: Second through hole

[0031] 230: First Embedded Hole

[0032] 240: Second Embedded Hole

[0033] 250: Anti-interference Department

[0034] 300: Edge binding clip

[0035] 310: Third through hole

[0036] 320: Third Embedded Hole

[0037] 400: Strap fixing clip

[0038] 410: Fourth through hole

[0039] 420: Fourth Embedded Hole

[0040] 430: Belt connection hole

[0041] 500: Fixed frame

[0042] 510: Core material fixing parts Detailed Implementation

[0043] The present invention provides a storage box, characterized in that: in order to allow the user to freely determine and change the opening direction or the position of accessories according to the items to be stored or the purpose of use, it includes: a core material, provided along the edge of an outer body that forms the shape of the storage box in the form of a plate or a hollow box; and an axis-determining clip, which is connected in such a way that the core material respectively provided in adjacent outer bodies can pass through simultaneously; by connecting the axis-determining clip to at least one of the plurality of sides forming the core material, the outer body connected by means of the axis-determining clip can be rotated around the axis-determining clip and thereby open the storage box.

[0044] The scope of the claims of this invention is not limited to the embodiments described below, but various modifications can be made by those skilled in the art without departing from the spirit of the invention.

[0045] Next, please refer to Figures 1 to 11 The storage box of the present invention will be described in detail.

[0046] The storage box of the present invention, such as Figures 1 to 11 As shown, it includes a core material 100 provided along the edge of the outer body 10 that forms the shape of the storage box, and an axis determining clip 200 incorporated into the core material 100.

[0047] The outer body 10 of this invention can be constructed in a plate-like form or a hollow box-like form. Furthermore, at least two outer bodies 10 can be combined to form the overall shape of a storage box, creating an internal storage space for holding items. As an example, such as... Figure 1 as well as Figure 2 As shown, a storage box with an internal storage space can be formed by arranging an outer body 10, which is a box with a hollow interior and an open side, vertically. As another example, Figures 9 to 11 As shown, a storage box can also be formed by arranging multiple outer bodies 10, which are plate-shaped, into a polygonal shape that forms a receiving space on the inside. In addition, the outer bodies 10 can be formed in the form of a circle or a polygon in cross-section, but considering the convenience of connecting with the axis-determining clip 200 described later and the various changes in the opening direction, it is preferable for the outer bodies 10 to be formed in the form of a polygon in cross-section, and the following explanation will be based on this premise.

[0048] The core material 100 can be formed in a thin tubular shape; for example, it can be made of metal wire. As described above, the core material 100 is disposed along the edge of the outer shell 10, and can be disposed not only along the inner edge of the outer shell 10 but also along the outer edge of the outer shell 10. However, in order to allow the user to easily attach or detach the shaft-determining clip 200, etc., as described later, Figure 1 , Figure 2 as well as Figures 9 to 10 As shown, the core material 100 is preferably provided along the outer edge of the outer body 10.

[0049] When the core material 100 is positioned along the outer edge of the outer body 10, in order for the outer body 10 to rotate while engaged with the shaft-determining clamp 200, it is positioned at a certain distance from the outer edge (or edge surface) of the outer body 10. As an example, multiple fixing plates protruding outward from the outer edge (or edge surface) can be formed at certain intervals along the outer edge of the outer body 10, and the core material 100 can be positioned in a manner that passes through multiple fixing plates. As another example, the present invention... Figure 1 as well as Figure 2 As shown, it may also include: a fixing frame 500 configured in a form corresponding to the outer edge (or edge surface) of the outer body 10, which can be attached to the outer edge (or edge surface) of the outer body 10; a plurality of core material fasteners 510 protruding outward from the outer edge of the fixing frame 500 can be formed at a certain distance along the outer edge of the fixing frame 500, and the core material 100 can be provided in such a way that the plurality of core material fasteners 510 pass through each other.

[0050] As described above, the core material 100, which is provided along the outer edge of the outer body 10, is configured in a polygonal shape corresponding to the cross-section of the outer body 10, thereby having multiple sides. Furthermore, as one example of the core material 100, it can be formed in a polygonal shape using a single metal wire, while as another example, it can be formed in a polygonal shape using multiple metal wires to form one side of the core material 100 and inserting the multiple metal wires through into the fixing plate or core material fixing member 510.

[0051] The shaft determines the clamping plate 200. Figure 1 as well as Figure 2As shown, the core materials 100, each respectively disposed in adjacent outer shells 10, are simultaneously connected. At this time, by attaching the axis-determining clip 200 to at least one of the plurality of sides constituting the core material 100, the outer shell 10 attached by means of the axis-determining clip 200 can rotate about the axis-determining clip 200, thereby opening the storage box. In this way, the user can select at least one of the plurality of sides constituting the core material 100 as the rotation axis for opening the storage box and attach the axis-determining clip 200, thereby enabling the storage box to be opened as follows: Figure 3 The opening direction can be changed as needed depending on the items to be stored or the intended use.

[0052] That is, the shaft determines that the clamp 200, when engaged in a manner that allows the core material 100, which can be respectively disposed in adjacent outer shells 10, must not interfere with the rotation of the outer shell 10, and therefore is formed in a relatively small size compared to the outer shell 10. As an example, such as Figure 4 a, Figure 4 b and Figure 5 As shown, the shaft determining clip 200 can be formed with a length corresponding to the spacing between the plurality of fixing pieces or the plurality of core material fixing members 510 as described above, and can be formed in such a way that all adjacent core materials 100 can be accommodated inside. Furthermore, the outer surface of the shaft determining clip 200 is formed in such a way that it corresponds to the outer surface of the adjacent fixing piece or the adjacent core material fixing member 510, so that no sense of incongruity is generated when the shaft determining clip 200 is engaged. In addition, in order to prevent interference with the outer shape 10 rotating around the shaft determining clip 200, an anti-interference portion can be formed by recessing the outer surface of the shaft determining clip 200 that is disconnected from the rotating outer shape 10. The anti-interference portion 250 described above not only prevents the problem of the outer shape 10 being unable to rotate properly due to contact with the shaft determining clip 200 when rotating, but also limits the rotation angle of the outer shape 10.

[0053] As described above, the shaft-determining clamp 00 can be engaged with or disengaged from the core material 100 in a manner that separates the core material 100 from the fixing plate or the core material fixing member 510. However, for the convenience of engaging and disengaging, it is preferable to forcibly embed it into the core material 100 from the outside.

[0054] As a specific capability, the shaft determines the clamping plate size of 200. Figure 4 a, Figure 4 b and Figure 5As shown, the device may include: a first through hole 210 and a second through hole 220, formed along the length direction to allow the core material 10 mounted on one outer body 10 and another adjacent outer body 10 to pass through; it may also include: a first insert hole 230 and a second insert hole 240, formed along the width direction such that the first through hole 210 and the second through hole 220 communicate with the outside. In this case, the first through hole 210 and the second through hole 220 are formed with a diameter corresponding to the diameter of the core material 10, while the first insert hole 230 and the second insert hole 240 are formed with a width smaller than the diameter of the core material 10, so that the axis determining clip 200 inserted into the core material 100 through the first insert hole 230 and the second insert hole 240 will not easily separate.

[0055] Furthermore, the first embedding hole 230 and the second embedding hole 240 are as follows Figure 4 a and Figure 5 As shown, the core material 100 of one outer body 10 that engages with the shaft determining clip 200 can be formed between the core material 100 of the outer body 10 on one side and the core material 100 of the other outer body 10. This is because, assuming the shaft determining clip 200 is inserted from the outside of the adjacent outer body 10, if the first insertion hole 230 and the second insertion hole 240 are aligned with the core material 100 inserted into the first through hole 210 and the second through hole 220 respectively, the shaft determining clip 200 embedded in the core material 100 may easily detach when an outward force is applied. The structure described above prevents this from happening. That is, the gap formed between the outermost end of the first insertion hole 230 and the outermost end of the second insertion hole 240 is smaller than the gap between the core materials 100 provided in the adjacent outer body 10, thereby preventing easy detachment even when an outward force is applied to the shaft determining clip 200 embedded in the core material 100.

[0056] Furthermore, the storage box of the present invention is configured such that the opening direction is determined by the user engaging the axis-determining clip 200 to a portion of the core material 100; therefore, the axis-determining clip 200 is not engaged in a portion of the core material 100. Thus, as... Figures 6 to 8 As shown, it may also include an edge clamp 300 that is attached to a portion of the core material 100 that does not have a clamping shaft determining clamp 200. The edge clamp 300 is configured such that it can be attached to a portion of the core material 10 of one of the adjacent outer bodies 10.

[0057] As described above, the binding clip 300 is configured in a form that does not interfere with the rotation of the shape body 10, which is determined by the axis. As an example, the binding clip 300 is as follows... Figure 4 c and Figure 7As shown, the core material fasteners 510 can be formed with a length corresponding to the spacing between them as described above, and can be formed such that the core material 100 disposed in an outer shell 10 is housed inside. The outer surface can be formed such that it corresponds to the outer surface of an adjacent fastener or core material fastener 510. Furthermore, the edge-binding clip 300 can be engaged with or disengaged from the core material 100 in a way that separates it from the core material 100. Alternatively, a third through hole 310 can be formed along the length direction through which the core material 100 disposed in an outer shell 10 passes, and a third insertion hole 320 can be formed along the width direction such that the third through hole 310 communicates with the outside. The core material 100 is then inserted into the third through hole 310 through the third insertion hole 320.

[0058] As described above, by attaching the edge-binding clip 300 to the core material 100 portion without the coupling shaft determining clip 200, the core material 100 portion without the coupling shaft determining clip 200 can be prevented from being exposed to the outside, thereby ensuring its aesthetics.

[0059] Furthermore, the present invention can be configured such that the installation position of accessories, such as a carrying strap for a handheld storage box or a shoulder strap for a shoulder-carrying storage box, can be freely determined by the user. As an example, for instance... Figures 6 to 8 As shown, it may also include: a strap fixing clip 400, which is coupled in such a way that it can pass through the core material 100 disposed in at least one of the adjacent outer bodies 10, and can be used to fix the strap 20.

[0060] As a specific example, such as Figure 4 a and Figure 7 As shown, the strap fixing clip 400 can be formed with a length corresponding to the distance between the plurality of fixing clips or the plurality of core material fixing members 510 as described above, and can be formed such that the core material 100 disposed in a body 10 is housed inside, and a strap engagement hole 430 for inserting the strap 20 can be formed through the portion extending in the outward direction. In addition, the strap fixing clip 400 can be engaged with or disengaged from the core material 100 in a way that separates it from the core material 100, but it can also form a fourth through hole 410 along the length direction for the core material 100 disposed in a body 10 to pass through, and a fourth insertion hole 420 is formed along the width direction such that the fourth through hole 410 communicates with the outside, thereby inserting the core material 100 into the third through hole 310 through the fourth insertion hole 420.

[0061] Thus, as an example, a user can secure the strap retaining clips 400, respectively located at both ends of the strap 20, to the storage box in a manner as follows: Figure 8 As shown, two positions that are randomly separated from each other are selected and secured with straps 400 respectively.

[0062] As described above, the present invention can be adapted to the shape and configuration structure of the outer body 10 as follows: Figures 1 to 11 The method shown creates a variety of different storage boxes, and the user can freely determine the opening direction of the storage box by using the shaft to determine the clip 200. Furthermore, the user can freely determine the position of the accessories by using the edge clip 300 and / or the strap to fix the clip 400. Thus, the storage box can be appropriately deformed for use according to the items to be stored or the purpose of use.

Claims

1. A storage box characterized by, Comprising: a core material (100) equipped along the edge of an outline body (10) constituting the outline of a storage box in a plate-like form or a box-like form with an inner hollow; and a shaft-determining clip (200) combined in a manner that allows the core materials (100) equipped in adjacent outline bodies (10) to pass through simultaneously; by combining the shaft-determining clip (200) to at least one of the plurality of edges constituting the core material (100), the outline body (10) combined with the shaft-determining clip (200) rotates around the shaft-determining clip (200) and thereby opens the storage box; at the same time, the distance between the core materials (100) in the shaft-determining clip (200) remains constant; the shaft-determining clip (200) comprises: a first through-hole (210) and a second through-hole (220) formed in a length direction in a manner that allows the core materials (100) equipped on one outline body (10) and another outline body (10) adjacent thereto to pass through respectively; and a first insertion hole (230) and a second insertion hole (240) formed in a width direction in a manner that allows the first through-hole (210) and the second through-hole (220) to communicate with the outside respectively; thereby the shaft-determining clip (200) is combined into the core materials (100) through the first insertion hole (230) and the second insertion hole (240); the first insertion hole (230) and the second insertion hole (240) are formed in a manner that faces between the core material (100) of one outline body (10) and the core material (100) of another outline body (10); the diameters of the first through-hole (210) and the second through-hole (220) match the diameters of the core materials (10); the first insertion hole (230) and the second insertion hole (240) are formed in a manner that faces between the core material (100) of one outline body (10) combined with the shaft-determining clip (200) and the core material (100) of another outline body (10); the widths of the first insertion hole (230) and the second insertion hole (240) are smaller than the diameters of the core materials (100), and the interval formed between the outermost end of the first insertion hole (230) and the outermost end of the second insertion hole (240) is smaller than the interval between the core materials (100) equipped in adjacent outline bodies (10); and the parts of the shaft-determining clip (200) corresponding to the first insertion hole (230) and the second insertion hole (240) are recessed inward to form an anti-interference part (250) from the outer side surface of the outline body (10) that is released from rotation.

2. The storage box according to claim 1, wherein Further comprising: a border clip (300) combined to the part of the core material (100) that is not combined with the shaft-determining clip (200) in a manner that does not interfere with the rotation of the outline body (10) combined with the shaft-determining clip (200).

3. The storage box according to claim 1, wherein: the core material (100) is equipped along the outer edge of the outline body (10), Also included are band fixing clips (400) that are coupled in a manner that penetrates the core material (100) of at least one of the adjacent outer bodies (10) and that can fix the band (20).

Citation Information

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