Storage box
By connecting the drawer and the box with guide rails and a snap-fit structure, the problem of drawer tilting or falling out is solved, and the drawer can be slid stably and be accessed smoothly.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN CIVET E-COMMERCE CO LTD
- Filing Date
- 2025-03-24
- Publication Date
- 2026-04-17
AI Technical Summary
The drawers of existing storage boxes are prone to tilting or falling out due to external forces or shifts in the center of gravity, and the limiting mechanism makes sliding difficult.
The drawer and box are connected by a guide rail and a snap-fit structure. The guide rail has a boss for guidance, the snap-fit slides in the guide rail, and the end wall restricts the movement of the drawer to ensure stable sliding.
It effectively prevents drawers from tilting or coming out, maintaining stability and smoothness during the sliding process.
Smart Images

Figure CN224131587U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of storage devices, and more particularly to a storage box. Background Technology
[0002] Most storage boxes on the market today use a drawer-style structure for easy storage and retrieval of hats, accessories, or clothing. However, during the pulling process, on the one hand, the force applied by the user when pulling out the drawer may be uneven, easily causing greater force on the front of the drawer and insufficient support at the back; on the other hand, when hats, clothing, or other stored items are placed on the drawer, due to the shift in the center of gravity, the drawer is more likely to tilt after being pulled out to a certain distance, and may even fall out of the box under external force.
[0003] Existing storage boxes have side rails on the side walls to guide the drawer's movement. These rails rest against the top of the drawer's side panel to limit vertical displacement and prevent tilting. However, this method has drawbacks: the rails only restrict the drawer's upward movement when subjected to a vertical force. When the drawer is subjected to a large horizontal pull, it may still detach completely from the box. Furthermore, friction between the rails and the drawer's side panel can cause the drawer to slide unevenly, affecting the smoothness of taking out and putting in stored items. Utility Model Content
[0004] In view of this, the present invention provides a storage box to solve the problem that the drawers of storage boxes in the prior art are easily detached from the box body.
[0005] To achieve one, some, or all of the above objectives, or other objectives, this utility model proposes a storage box, comprising: a storage box, including a box body with a first end and a second end, a receiving cavity extending from the first end to the second end within the box body, an opening at the second end, and a sliding direction from the first end to the second end; a drawer, the drawer entering and exiting the receiving cavity through the opening; at least one connecting component, including a first connecting structure and a second connecting structure, the first connecting structure being disposed on one of the box body or the drawer, the second connecting structure being disposed on the other of the box body or the drawer, the first connecting structure extending towards the opening along the sliding direction and having an end wall disposed at the end near the opening, the second connecting structure being slidably connected to the first connecting structure, allowing the second connecting structure to slide along the first connecting structure to approach or move away from the opening; when the second connecting structure approaches the opening and abuts against the end wall, the drawer is at least partially connected to the box body.
[0006] Preferably, the first connecting structure is a strip-shaped guide rail, and the second connecting structure is a snap-fit, which is installed in the guide rail.
[0007] Preferably, the buckle is set on the drawer and the guide rail is set on the box body; the buckle includes a connecting part and a hook part, the beginning of the connecting part is connected to the drawer, and the end of the connecting part is connected to the hook part; when the buckle is installed on the guide rail, the end of the connecting part extends out of the guide rail or is placed in the guide rail, so that the side of the hook part facing the drawer abuts against the box body or the guide rail.
[0008] Preferably, the guide rail includes at least one guide rail wall and a boss formed on the guide rail wall, the boss extending along the guide rail wall, and the latch sliding along the boss.
[0009] Preferably, the box body includes several surrounding walls that enclose a receiving cavity, and the surrounding walls include a bottom wall. The drawer slides above the bottom wall, and a first connecting structure is disposed on the bottom wall.
[0010] Preferably, it also includes a lid, which is rotatably mounted on the second end of the box body, and rotating the lid can cause the opening to close or open.
[0011] Preferably, it also includes a first partition, which is disposed in the receiving cavity and near the second end, and abuts against the cover when the cover is rotated to close the opening.
[0012] Preferably, it further includes a first slide rail and a second slide rail, both of which are disposed within the receiving cavity and extend toward the opening along the sliding direction; the cover includes a cover plate, a first rotating terminal and a second rotating terminal located on both sides of the cover plate, the first rotating terminal and the second rotating terminal being coaxially disposed, and the first rotating terminal being installed in the first slide rail and the second rotating terminal being installed in the second slide rail, the cover plate being rotatable about the axis of the first rotating terminal to open or close the opening; when the cover plate is rotated to open the opening, the first rotating terminal and the second rotating terminal can slide along the first slide rail and the second slide rail respectively, so that the first rotating terminal and the second rotating terminal are close to the first end.
[0013] Preferably, it also includes a second partition, which is disposed in the receiving cavity and near the second end. When the first rotating terminal and the second rotating terminal are close to the first end, the cover plate is approximately parallel to the first slide rail and the second slide rail, and the cover plate overlaps the second partition.
[0014] Preferably, the box body includes several surrounding walls, including a top wall, and the angle between the cover and the top wall is an obtuse angle.
[0015] Preferably, at least a portion of the box body and / or at least a portion of the cover body is made of a light-transmitting material.
[0016] Preferably, it also includes an anti-slip component, which is located at the bottom of the box.
[0017] Preferably, the box body includes several enclosures that enclose a cavity, and also includes multiple splicing components. The splicing components include a first splicing structure and a second splicing structure. The first splicing structure is installed on one of two adjacent enclosures, and the second splicing structure is installed on the other of two adjacent enclosures, so that the two adjacent enclosures can be detachably connected.
[0018] Preferably, the first splicing structure includes a socket, and the second splicing structure includes a slot configured to receive the socket.
[0019] Preferably, the first splicing structure further includes a card platform, and the second splicing structure includes a card slot, wherein when the card platform is inserted into the slot, the card platform is embedded in the card slot.
[0020] Preferably, the drawer has a receiving space, and when several enclosures are disassembled, at least one enclosure can be accommodated in the receiving space of the drawer.
[0021] Preferably, the drawer includes multiple walls, and the receiving space is formed by the multiple walls together, with at least one wall having a notch.
[0022] Implementing the embodiments of this utility model will have the following beneficial effects:
[0023] After adopting the above-mentioned storage box, the box body and the drawer are connected by the connecting components, which realizes the constraint of the drawer during movement, effectively preventing the drawer from tilting or falling out due to external forces or the weight of the cap, so that the drawer remains stable during sliding. Attached Figure Description
[0024] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0025] Figure 1 This is a diagram showing the state of the storage box when its opening is open.
[0026] Figure 2 This is a structural diagram of a storage box, with the opening located on the front side wall;
[0027] Figure 3 This is a diagram showing the state of the storage box when the opening is closed.
[0028] Figure 4 One of the diagrams illustrating the explosion of a storage box;
[0029] Figure 5 A bottom view of the storage box;
[0030] Figure 6 This is a cross-sectional view of the connecting components;
[0031] Figure 7 This is a schematic diagram of the guide rail structure;
[0032] Figure 8 The second diagram showing the explosion of the storage box;
[0033] Figure 9 for Figure 8 Enlarged schematic diagrams of parts B and C from different perspectives;
[0034] Figure 10 This is a schematic diagram of the cover structure;
[0035] Figure 11 This is a schematic diagram of the structure when the cover is connected to the first or second slide rail;
[0036] Figure 12 The third diagram illustrating the explosion of the storage box;
[0037] Figure 13 An exploded view of the splicing components;
[0038] Figure 14 This is a structural diagram of the splicing components;
[0039] Figure 15 This is a schematic diagram of a structure with multiple walls stacked together.
[0040] Figure 16 This is a schematic diagram of the explosion of multiple enclosure walls.
[0041] in:
[0042] 1. Box body; 100. Receiving cavity; 101. First end; 102. Second end; 103. Opening; 10. Enclosure; 11. Bottom wall; 12. Left side wall; 121. First slide rail; 1211. Upper edge; 1212. Lower edge; 13. Right side wall; 131. Second slide rail; 14. Rear side wall; 15. Top wall; 16. First partition; 17. Second partition; 18. Front side wall; 2. Drawer; 20. Receiving space; 21. Notch; 22. Wall surface; 3. Connecting assembly; 31. First connecting structure; 31 0. Guide rail; 311. End wall; 312. Cover plate; 313. Insertion end; 314. Guide rail wall; 32. Second connecting structure; 320. Buckle; 3201. Connecting part; 3202. Hook part; 4. Cover body; 40. Cover plate; 41. Connecting end; 411. First rotating terminal; 412. Second rotating terminal; 42. Free end; 5. Anti-slip component; 70. Splicing assembly; 71. First splicing structure; 711. Insertion platform; 712. Card platform; 72. Second splicing structure; 721. Slot; 722. Card groove. Detailed Implementation
[0043] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the terminology used herein in the specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention; the terms "comprising" and "having," and any variations thereof, in the specification, claims, and accompanying drawings of this invention are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, or accompanying drawings of this invention are used to distinguish different objects, not to describe a particular order.
[0044] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the present invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0045] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.
[0046] See appendix Figures 1 to 4 This utility model proposes a storage box, including a box body 1 and a drawer 2. The box body 1 includes a first end 101 and a second end 102. A receiving cavity 100 extending from the first end 101 to the second end 102 is provided inside the box body 1. An opening 103 is provided at the second end 102. The direction from the first end 101 to the second end 102 is the sliding direction. The drawer 2 enters and exits the receiving cavity 100 through the opening 103.
[0047] When in use, the user can apply a pushing or pulling force to the drawer 2, which allows the drawer 2 to be pulled out of the box 1 or pushed into the box 1 through the opening 103.
[0048] The box body 1 includes several surrounding walls 10. It is understood that the opening 103 can be a hole structure formed in the surrounding walls 10, or it can be formed by multiple surrounding walls 10. See appendix. Figure 1 For example, in one embodiment, a plurality of enclosure walls 10 include a left side wall 12, a right side wall 13, a top wall 15, a bottom wall 11, and a rear side wall 14. An opening 103 is formed by the left side wall 12, the right side wall 13, the top wall 15, and the bottom wall 11. The rear side wall 14 is located at the first end 101, and the opening 103 is located at the second end 102. (See attached figure) Figure 2For example, in another embodiment, a plurality of enclosure walls 10 include a left side wall 12, a right side wall 13, a top wall 15, a bottom wall 11, a rear side wall 14 and a front side wall 18, the rear side wall 14 being disposed at a first end 101, the front side wall 18 being disposed at a second end 102, and an opening 103 being formed on the front side wall 18.
[0049] The storage box also includes at least one connecting component 3 for connecting the drawer and the box body. Each connecting component 3 includes a first connecting structure 31 and a second connecting structure 32. The first connecting structure 31 is disposed on one of the box body 1 or the drawer 2, and the second connecting structure 32 is disposed on the other of the box body 1 or the drawer 2. The first connecting structure 31 extends towards the opening 103 in the sliding direction and has an end wall 311 at one end near the opening 103. The second connecting structure 32 is slidably connected to the first connecting structure 31, allowing the second connecting structure 32 to slide along the first connecting structure 31 to move closer to or away from the opening 103. When the second connecting structure 32 approaches the opening 103 and abuts against the end wall 311, the drawer 2 is at least partially connected to the box body 1. That is, the end wall 311 of the first connecting structure 31 restricts the second connecting structure 32 from continuing to move outward, preventing the drawer 2 from falling out of the box body 1.
[0050] Regarding the specific arrangement of the first connecting structure 31 and the second connecting structure 32, in some embodiments, the first connecting structure 31 is disposed on the box body 1, and the second connecting structure 32 is disposed on the drawer 2; in other embodiments, the first connecting structure 31 is disposed on the drawer 2, and the second connecting structure 32 is disposed on the box body 1. That is to say, the installation positions of the first connecting structure 31 and the second connecting structure 32 can be interchanged. The following description uses the example of the first connecting structure 31 being disposed on the box body 1 and the second connecting structure 32 being disposed on the drawer 2.
[0051] See appendix Figure 4 In this embodiment, the drawer 2 slides above the bottom wall 11, the first connecting structure 31 is disposed on the bottom wall 11, and the second connecting structure 32 is disposed on the bottom surface of the drawer 2.
[0052] See appendix Figures 4 to 7 The first connecting structure 31 is a strip-shaped guide rail 310, and the second connecting structure 32 is a buckle 320, which is installed in the guide rail 310 and can slide along the guide rail 310.
[0053] Regarding the structure of the latch 320, the latch 320 includes a connecting part 3201 and a hook part 3202. The beginning end of the connecting part 3201 is connected to the drawer 2, and the end end of the connecting part 3201 is connected to the hook part 3202. When the latch 320 is installed on the guide rail 310, the end end of the connecting part 3201 extends out of the guide rail 310 or is placed in the guide rail 310, so that the hook part 3202 abuts against the box body 1 or the guide rail 310 on the side facing the drawer 2.
[0054] Regarding the structure of the guide rail 310, the guide rail 310 includes at least one guide rail wall 314 and a boss 312 formed on the guide rail wall 314. The boss 312 extends along the guide rail 310, and the latch 320 can slide along the boss 312.
[0055] In one embodiment, the guide rail 310 includes two opposing guide rail walls 314, and a boss 312 protrudes from one guide rail wall 314 toward the other guide rail wall 314, forming a sliding channel for the latch 320 between the two guide rail walls 314. At least a portion of the projection of the boss 312 coincides with the sliding channel, so that after the latch 320 is installed on the guide rail 310, the top surface of the hook portion 3202 can abut against the bottom surface of the boss 312. When the drawer 2 slides, on the one hand, the boss 312 provides a sliding guide for the latch 320; on the other hand, the hook portion 3202, through its cooperation with the boss 312, prevents the latch 320 from dislodging from the guide rail 310.
[0056] In another embodiment, the guide rail 310 is provided in the form of a strip groove, which can be vertically inserted through the bottom wall. The strip groove has two opposing groove walls, one of which serves as the guide rail wall. The connecting part 3201 of the buckle 320 passes through the strip groove, and at this time, the connecting part 3201 of the buckle 320 is close to one of the groove walls, so that the top surface of the hook part 3202 abuts against the bottom wall 11 of the box body 1. It should be noted that in other embodiments, the guide rail wall 314 has an upper edge and a lower edge, so that the guide rail wall 314, the upper edge, and the lower edge together form a "C" shaped structure, wherein the upper edge is the boss 312.
[0057] The guide rail 310 includes an insertion end 313. The protrusion 312 at the insertion end 313 has a small degree of protrusion. During installation, the latch 320 is aligned with the insertion end 313 of the guide rail 310. Under the action of external force, the hook portion 3202 moves from top to bottom, passing over the protrusion 312 and positioning itself below the protrusion 312, thus completing the installation of the guide rail 310 and the latch 320. The insertion end 313 provides sufficient installation space for the latch 320, allowing it to smoothly engage with the guide rail 310. As the latch 320 moves along the length of the guide rail 310, the protrusion of the protrusion 312 increases, resulting in greater constraint on the latch 320 from the guide rail 310. This prevents the drawer 2 from wobbling when sliding along the extension direction of the guide rail 310. Furthermore, the detachable connection between the guide rail 310 and the latch 320 allows the user to remove the drawer 2 from the box 1 when needed for easy cleaning.
[0058] See appendix Figure 4The end wall 311 is a closed structure at the end of the guide rail 310, ensuring that the guide rail 310 is not connected to the outside world at least at the second end 102. This physically limits the sliding drawer 2, preventing it from being completely pulled out from the opening at the second end. That is, when the drawer 2 is pulled out to its limit position, the front end of the latch 320 contacts the end wall 311 of the guide rail 310, preventing the drawer 2 from sliding outwards further. After the latch 320 is embedded in the guide rail 310, the protrusion 312 and the end wall 311 of the guide rail 310 limit the drawer 2 in the vertical and horizontal directions, respectively, ensuring that the drawer 2 always maintains stable sliding during use and will not tilt or detach from the box 1 due to external forces or the influence of placed items.
[0059] Of course, in other embodiments, the installation positions of the first connecting structure 31 and the second connecting structure 32 are interchanged, that is, the second connecting structure 32 is disposed on the bottom wall 11, and the first connecting structure 31 is disposed on the drawer 2. In other words, in this other embodiment, the buckle 320 is disposed on the bottom wall 11, and the guide rail 310 is correspondingly disposed on the bottom of the drawer 2.
[0060] It should be noted that in other embodiments, the position of the connecting structure can be adjusted according to actual needs. For example, either the first connecting structure 31 or the second connecting structure 32 can be set not only on the bottom wall 11, but also on other surrounding walls 10 of the box body 1 (such as the left side wall 12, the right side wall 13 or the top wall 15); correspondingly, the other connecting structure is set at the corresponding position of the drawer 2 (such as the left wall, the right wall or the rear wall) to ensure that the two cooperate with each other inside the box body 1 to achieve a stable sliding connection.
[0061] In one embodiment, the storage box includes two connecting components 3, which are arranged in parallel. The arrangement of the two connecting components 3 can vary depending on actual needs; for example, see Appendix. Figure 4 The two first connecting structures 31 can be arranged in the same plane, such as on the inner surface of the bottom wall 11; correspondingly, the second connecting structure 32 is also arranged in the same plane, such as on the bottom surface of the drawer 2. Alternatively, the two first connecting structures 31 can be arranged on two opposite planes, such as the inner surfaces of the left side wall 12 and the right side wall 13; simultaneously, the second connecting structure 32 is also arranged on the left and right walls of the drawer 2. This design provides double protection for the storage box, not only facilitating the smooth sliding of the drawer 2 within the box body 1, but also providing stable support from the two sets of connecting components 3, making it less likely for the drawer 2 to tilt or detach during the pulling process.
[0062] See appendix Figure 1-3In one embodiment, the storage box further includes a lid 4, which is rotatably mounted on the second end 102 of the box body 1. Specifically, the lid 4 is rotatably connected to the box body 1 and can rotate about a fixed axis, thereby closing or opening the opening 103. This facilitates the storage and retrieval of items such as hats and clothing by the user and also prevents dust from falling into the interior of the box body 1, keeping the stored items clean.
[0063] To facilitate user rotation of the cover 4, in one embodiment, the cover 4 is provided with an operating part, which allows the user to apply force to open or close the cover 4, improving operational convenience. Specifically, the operating part includes various structural styles, such as a notch structure, located on the edge or surface of the cover 4, allowing the user to insert their fingers into the notch to apply force to flip the cover 4; the operating part can also be a protruding structure, formed on the surface of the cover 4 or extending outward from the edge of the cover 4, allowing the user to open or close the cover 4 by gripping the protruding structure; the operating part can also be in the form of a pull ring or handle, connected to the surface of the cover 4 by bolt connection, snap connection, adhesive adhesion, etc., providing a more direct point of force application.
[0064] See appendix Figures 8 to 9 In one embodiment, the storage box further includes a first partition 16 disposed within the receiving cavity 100 and near the second end 102. Specifically, the first partition 16 may be disposed on the inner side of the left side wall 12 and / or the right side wall 13 of the box body 1. When the lid 4 is rotated to close the opening 103, the first partition 16 abuts against the lid 4 to prevent the lid 4 from deviating into the box body 1 during rotation and to provide support when the lid 4 is closed.
[0065] See appendix Figure 10 The cover 4 includes a connecting end 41 and a free end 42. The connecting end 41 has a pivot and is located near the top wall 15 of the box 1. The free end 42 is located near the bottom wall 11 of the box 1. When the cover 4 rotates around the pivot, the free end 42 swings along an arc-shaped trajectory to open or close the opening 103. If the first partition 16 is located far from the bottom wall 11, the free end 42 may still slightly deviate into the box 1 during rotation due to insufficient support, causing the cover 4 to fail to completely cover the opening 103. Therefore, the first partition 16 is preferably located near the bottom wall 11 and abuts against the free end 42 of the cover 4 when the cover 4 rotates to the closed position to prevent the cover 4 from deviating into the box 1. To provide more stable support, in one embodiment, the box body 1 is provided with two first partitions 16, located in the areas of the left side wall 12 and the right side wall 13 near the bottom wall 11, respectively. The first partitions 16 may be protrusions or bars formed along the inner surfaces of the left side wall 12 and / or the right side wall 13, so that when the cover 4 is rotated to the closed position, its edge contacts the protrusion, thereby restricting the cover 4 from continuing to rotate into the box body 1.
[0066] See appendix Figures 8 to 11 The storage box also includes a first slide rail 121 and a second slide rail 131. Both the first slide rail 121 and the second slide rail 131 are disposed within the receiving cavity 100 and extend towards the opening 103 along the sliding direction. The cover 4 includes a cover plate 40, a first rotating terminal 411 and a second rotating terminal 412 located on both sides of the cover plate 40. The first rotating terminal 411 and the second rotating terminal 412 are coaxially arranged, and the first rotating terminal 411 is installed in the first slide rail 121, and the second rotating terminal 412 is installed in the second slide rail 131. The cover plate 40 can rotate around the axis of the first rotating terminal 411 to open or close the opening 103.
[0067] When the cover plate 40 is rotated to open the opening 103, the first rotating terminal 411 and the second rotating terminal 412 can slide along the first slide rail 121 and the second slide rail 131 respectively, so that the first rotating terminal 411 and the second rotating terminal 412 are close to the first end 101.
[0068] In one embodiment, a first slide rail 121 is provided on the inner side of the left side wall 12, and a second slide rail 131 is provided on the inner side of the right side wall 13. The first slide rail 121 is parallel to the second slide rail 131. When the cover 4 is rotated to open the opening 103, the first rotating terminal 411 and the second rotating terminal 412 can extend into the receiving cavity 100 of the box 1 along the first slide rail 121 and the second slide rail 131, respectively.
[0069] The first rotating terminal 411 and the second rotating terminal 412 can be cylindrical or other components adapted to the shape of the slide rail, or they can be rotating shafts extending from both ends of the cover 4. In one embodiment, the length of the first slide rail 121 and the second slide rail 131 is not greater than the length of the cover 4 (the side length of the cover 4 near the left side wall 12 or the right side wall 13 of the box 1), and the end of the first slide rail 121 and the second slide rail 131 near the rear side wall 14 of the box 1 is a closed end. The closed end can prevent the first rotating terminal 411 and the second rotating terminal 412 from dislodging from the guide rail 310, thus avoiding the accidental detachment of the cover 4.
[0070] During operation, the user first flips open the cover 4, so that the cover 4 changes from the closed opening 103 state to a state that is roughly parallel to the extension direction of the slide rail. At this time, the user pushes the cover 4 into the receiving cavity 100 of the box 1, so that the first rotating terminal 411 and the second rotating terminal 412 slide along the first slide rail 121 and the second slide rail 131 respectively, so that the cover 4 can extend into the receiving cavity 100 in the flipped state.
[0071] See appendix Figure 9In order to keep the lid open after the lid 4 is pushed into the box 1, the storage box also includes a second partition 17. The second partition 17 is disposed in the receiving cavity 100 and near the second end 102. When the first rotating terminal 411 and the second rotating terminal 412 are close to the first end 10, the cover plate 40 is approximately parallel to the first slide rail 121 and the second slide rail 131, and the cover plate 40 overlaps the second partition 17.
[0072] Specifically, in one embodiment, a second partition 17 is provided on both the left side wall 12 and the right side wall. The second partition 17 extends to the opposite side to avoid obstructing the view. When the first rotating terminal 411 and the second rotating terminal 412 extend into the receiving cavity 100, the cover plate 40 overlaps the second partition 17, which provides necessary support for the cover 4 and prevents the cover 4 from closing. The first slide rail 121 and the second slide rail 131 include an upper edge 1211 and a lower edge 1212, forming a movement gap between the upper edge 1211 and the lower edge 1212 for the first rotating terminal 411 or the second rotating terminal 412. The second partition 17 extends from the lower edge 1212 of the first slide rail 121 or the second slide rail 131 into the box 1, so that the free end 42 of the cover 4 overlaps the second partition 17. After being opened, the cover 4 can not only remain open but also extend into the receiving cavity 100, thereby reducing external space occupation and improving the neatness of storage.
[0073] It should be noted that the second partition 17 can adopt different structural forms according to actual needs. For example, the second partition 17 can be a strip structure extending from the lower edge 1212 of the slide rail into the receiving cavity 100, providing a continuous support surface to make the cover 4 more stable in the open state; it can also be a partially protruding support block, providing support only at key locations. In addition, the installation position of the second partition 17 is not limited to extending from the lower edge 1212, but can also be set on the surrounding wall 10 of the box 1 below the slide rail. As long as it can ensure that the cover 4 is supported in the open state and prevent it from accidentally falling back or closing, it can be considered an effective variation of the second partition 17.
[0074] Regarding the shape of the storage box, it has an inclined surface, with the opening 103 located on this inclined surface. When the lid 4 closes the opening 103, the angle between the lid 40 and the top wall 15 is an obtuse angle. In one embodiment, see Appendix Figure 1The opening 103 slopes from the top wall 15 to the bottom wall 11, and the left side wall 12 and right side wall 13 are roughly in the shape of right-angled trapezoids. This design makes the overall structure of the box 1 more ergonomic, allowing for easier access and reducing inconvenience caused by obstructed vision or unsuitable operating angles. Furthermore, in scenarios where the storage box is used to store hats, baseball caps typically have a protruding brim, with the overall design featuring a slope from the top of the cap to the front of the brim. The opening 103 and the cover 40 not only better accommodate the baseball cap but also allow the brim to naturally conform to the internal structure of the box 1.
[0075] To further enhance the practicality of the storage box, in one embodiment, at least a portion of the box body 1 and / or at least a portion of the lid 4 is made of a light-transmitting material. For example, the top wall of the box body and the lid of the lid are light-transmitting designs. The light-transmitting material can be transparent, translucent plastic, or other light-transmitting composite materials, which helps improve the visibility inside the box body 1, allowing users to intuitively view the storage status of the items inside without opening the lid 4, thereby improving the convenience of retrieval and placement. In addition, the light-transmitting material can also enhance the aesthetics of the product, making it more visually appealing and suitable for various application scenarios such as home storage and commercial display racks.
[0076] The storage box also includes an anti-slip component 5, which is located at the bottom of the box body 1 to increase friction and prevent the box body 1 from sliding or shifting during use. Especially when the user pulls out the drawer 2, the box body 1 may move under the influence of the force applied to the drawer 2. The anti-slip component 5 effectively increases the friction between the box body 1 and the contact surface, thereby reducing accidental sliding and improving stability during use. The anti-slip component 5 can be made of rubber pads, anti-slip silicone strips, anti-slip particles, or other high-friction materials, and can be fixed to the bottom of the box body 1 by means of adhesive, embedding, or integral molding. (See appendix) Figure 5 This application provides an embodiment in which anti-slip components 5 are distributed at the four corners of the bottom of the box body 1, providing friction in key areas. Alternatively, the anti-slip components 5 can also be suction cups, which, through negative pressure, tightly connect to the surface where the storage box is placed. Of course, the storage box can be used normally without the anti-slip components 5; the presence or absence of the anti-slip components 5 does not affect the basic function of the storage box.
[0077] Further, see appendix. Figure 12 The box body 1 is assembled from multiple enclosures 10, namely the top wall 15, bottom wall 11, left side wall 12, right side wall 13 and rear side wall 14. Each enclosure 10 is detachably connected to the adjacent enclosures 10. When needed, the user can disassemble the box body 1 according to actual needs and transport and store it in a stacked manner.
[0078] Specifically, the enclosure 10 is fixed to its adjacent enclosure 10 by splicing. See Appendix Figure 13 The box body 1 includes a splicing assembly 70, which includes a first splicing structure 71 and a second splicing structure 72. The first splicing structure 71 is installed on one of two adjacent enclosure walls 10, and the second splicing structure 72 is installed on the other of the two adjacent enclosure walls 10, allowing the two adjacent enclosure walls 10 to be detachably connected. Each of the first splicing structure 71 and the second splicing structure 72 can be set as an independent component on the edge of each enclosure wall 10, or the first splicing structure 71 or the second splicing structure 72 can be integrally formed with the enclosure wall 10.
[0079] See appendix Figure 13 and attached Figure 14 In one embodiment, the first splicing structure 71 includes a socket 711, and the second splicing structure 72 includes a slot 721 configured to receive the socket 711, for example, to achieve the insertion of the two in an interference fit manner.
[0080] To ensure that each enclosure 10 does not easily detach from adjacent enclosures 10 after assembly, the first splicing structure 71 also includes a locking platform 712. Correspondingly, the second splicing structure 72 includes a locking groove 722. When the insertion platform 711 of the first splicing structure 71 is inserted into the slot 721, the locking platform 712 is embedded in the locking groove 722 to prevent the panel from falling off. The locking groove 722 can be provided in various ways. For example, in one embodiment, the second splicing structure 72 is provided with a hook, which is formed on one side of the slot 721. The locking groove 722 is a recessed structure on the hook, that is, the locking groove 722 is formed on the hook. The locking platform 712 and the insertion platform 711 are perpendicular to each other in position. The hook has a certain deformation space. During installation, the user inserts the insertion platform 711 into the slot 721. At this time, the hook undergoes elastic deformation, so that the locking platform 712 is placed in the locking groove 722 of the hook.
[0081] In addition, bolted connections or other detachable connection methods can be used between the various enclosure walls 10.
[0082] If the storage box is transported or stored in a disassembled state, the drawer 2 and the enclosure 10 are usually arranged in a stacked manner in the packaging box. In one embodiment, the drawer 2 has a receiving space 20, and when several enclosures 10 are disassembled, at least one enclosure 10 can be accommodated in the receiving space 20 of the drawer 2.
[0083] To further reduce the storage space of the storage box when disassembled, please refer to the appendix. Figure 15-16 In one embodiment, the drawer 2 includes a plurality of walls 22, and the receiving space 20 is formed by the walls 22. At least one of the plurality of walls 22 has a notch 21, for example, a notch is opened on the wall on the back side of the drawer.
[0084] In one embodiment, during storage or transportation, the box 1 is disassembled, and either the left side wall 12 or the right side wall 13 can be placed in the receiving space 20 of the drawer 2, with at least a portion of the left side wall 12 or the right side wall 13 protruding from the notch 21. In this way, both the left side wall 12 and the right side wall 13 of the box 1 can be accommodated in the receiving space 20 of the drawer 2, saving storage space and thus reducing transportation costs. It should be noted that in other embodiments, in addition to the left side wall 12 and the right side wall 13, other walls 10 can also be placed flat in the receiving space 20 through the notch 21.
[0085] Obviously, the embodiments described above are only some embodiments of this utility model, not all embodiments. The accompanying drawings show preferred embodiments of this utility model, but do not limit the patent scope of this utility model. This utility model can be implemented in many different forms; rather, the purpose of providing these embodiments is to provide a more thorough and comprehensive understanding of the disclosure of this utility model. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing specific embodiments, or make equivalent substitutions for some of the technical features. Any equivalent structures made using the content of this utility model specification and drawings, directly or indirectly applied to other related technical fields, are similarly within the patent protection scope of this utility model.
Claims
1. A storage case characterized by comprising: include: The box body (1) includes a first end (101) and a second end (102). The box body (1) is provided with a receiving cavity (100) extending from the first end (101) to the second end (102). An opening (103) is provided at the second end (102). The direction from the first end (101) to the second end (102) is the sliding direction. Drawer (2), which enters and exits the receiving cavity (100) through the opening (103); At least one connecting component (3) includes a first connecting structure (31) and a second connecting structure (32), the first connecting structure (31) being disposed on one of the box body (1) or the drawer, and the second connecting structure (32) being disposed on the other of the box body (1) or the drawer (2), the first connecting structure (31) extending toward the opening (103) along the sliding direction and having an end wall (311) disposed at one end near the opening (103), the second connecting structure (32) being slidably connected to the first connecting structure (31) such that the second connecting structure (32) can slide along the first connecting structure (31) to approach or move away from the opening (103); When the second connecting structure (32) approaches the opening (103) and abuts against the end wall (311), the drawer (2) is at least partially connected to the box body (1).
2. The storage box according to claim 1, wherein The first connecting structure (31) is configured as a strip-shaped guide rail (310), and the second connecting structure (32) is configured as a buckle (320), which is installed in the guide rail (310).
3. The case of claim 2, wherein The buckle (320) is provided on the drawer (2), and the guide rail (310) is provided on the box body (1); The buckle (320) includes a connecting part (3201) and a hook part (3202). The beginning end of the connecting part (3201) is connected to the drawer (2), and the end end of the connecting part (3201) is connected to the hook part (3202). When the buckle (320) is installed on the guide rail (310), the end of the connecting part (3201) extends out of the guide rail (310) or is placed in the guide rail (310), so that the hook part (3202) abuts against the box body (1) or the guide rail (310) on the side facing the drawer (2).
4. The case of claim 2, wherein The guide rail (310) includes at least one guide rail wall (314) and a boss (312) formed on the guide rail wall (314), the boss (312) extending along the guide rail wall (314), and the latch (320) sliding along the boss (312).
5. The case of claim 1, wherein The box body (1) includes a plurality of surrounding walls (10), which together form a receiving cavity (100). The plurality of surrounding walls (10) include a bottom wall (11). The drawer (2) slides above the bottom wall (11). The first connecting structure (31) is disposed on the bottom wall (11).
6. The storage box according to claim 1, characterized in that, It also includes a cover (4), which is rotatably mounted on the second end (102) of the box body (1), and rotating the cover (4) can cause the opening (103) to close or open.
7. The storage box according to claim 6, characterized in that, It also includes a first partition (16), which is disposed in the receiving cavity (100) and near the second end (102). When the cover (4) is rotated to close the opening (103), the first partition (16) abuts against the cover (4).
8. The case of claim 6, wherein It also includes a first slide rail (121) and a second slide rail (131), both of which are disposed in the receiving cavity (100) and extend toward the opening (103) along the sliding direction; The cover (4) includes a cover plate (40), a first rotating terminal (411) and a second rotating terminal (412) located on both sides of the cover plate (40). The first rotating terminal (411) and the second rotating terminal (412) are coaxially arranged, and the first rotating terminal (411) is installed in the first slide rail (121), and the second rotating terminal (412) is installed in the second slide rail (131). The cover plate (40) can rotate around the axis of the first rotating terminal (411) to open or close the opening (103). When the cover plate (40) is rotated to open the opening (103), the first rotating terminal (411) and the second rotating terminal (412) can slide along the first slide rail (121) and the second slide rail (131) respectively, so that the first rotating terminal (411) and the second rotating terminal (412) are close to the first end (101).
9. The case of claim 8, wherein, It also includes a second partition (17), which is disposed in the receiving cavity (100) and near the second end (102). When the first rotating terminal (411) and the second rotating terminal (412) are close to the first end (101), the cover plate (40) is approximately parallel to the first slide rail (121) and the second slide rail (131), and the cover plate (40) overlaps the second partition (17).
10. The storage case of claim 6, wherein, The box body (1) includes several surrounding walls (10), the surrounding walls (10) include a top wall (15), and the angle between the cover (4) and the top wall (15) is an obtuse angle.
11. The storage case of claim 6, wherein, At least a portion of the box body (1) and / or at least a portion of the cover body (4) is made of a light-transmitting material.
12. The storage case of claim 1, wherein, It also includes an anti-slip component (5), which is disposed at the bottom of the box body (1).
13. The storage case of claim 1, wherein, The box body (1) includes a plurality of surrounding walls (10), and the surrounding walls (10) together form the receiving cavity (100). The storage box also includes multiple splicing components (70), each splicing component (70) including a first splicing structure (71) and a second splicing structure (72). The first splicing structure (71) is installed on one of the two adjacent enclosures (10), and the second splicing structure (72) is installed on the other of the two adjacent enclosures (10), so that the two adjacent enclosures (10) can be detachably connected.
14. The case of claim 13, wherein, The first splicing structure (71) includes a socket (711), and the second splicing structure (72) includes a slot (721) configured to receive the socket (711).
15. The case of claim 14, wherein, The first splicing structure (71) further includes a card platform (712), and the second splicing structure (72) includes a card slot (722). When the card platform (711) is inserted into the slot (721), the card platform (712) is embedded in the card slot (722).
16. The storage case of claim 13, wherein, The drawer (2) has a receiving space (20) such that when several of the enclosures (10) are disassembled, at least one of the enclosures (10) can be accommodated in the receiving space (20) of the drawer (2).
17. The storage case of claim 16, wherein, The drawer (2) includes multiple walls (22), and the receiving space (20) is formed by the multiple walls (22) together. At least one of the walls (22) has a notch (21).