Detachable storage cabinet

By designing a detachable connection structure between the support components and the frame of the detachable locker, the problems of high transportation costs and damage risks caused by fixing the support rail and the frame as one unit are solved, thus realizing a locker that is easy to install and highly stable.

CN224219713UActive Publication Date: 2026-05-12SHANGHAI YINTA NETWORK TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI YINTA NETWORK TECHNOLOGY CO LTD
Filing Date
2025-04-18
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

The existing lockers have fixed support rails and frame structures, resulting in high packaging and transportation costs, especially in the foreign trade sector, which adds unnecessary expenses and makes them prone to damage during transportation.

Method used

Design a detachable storage cabinet. Through a first connection structure and a second connection structure, the two ends of the support member can be detachably connected to the frame in different directions. The support member can be packaged and transported separately. During installation, the two ends of the support member are connected to the frame with different movement trajectories, thereby improving the reliability and stability of the connection.

Benefits of technology

The design incorporates a detachable frame and support components, reducing packaging volume and transportation costs, minimizing the risk of damage, and improving the overall stability and ease of operation of the locker.

✦ Generated by Eureka AI based on patent content.

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Abstract

A detachable storage cabinet comprises a frame which comprises at least two main body parts arranged at intervals in the first direction; each supporting piece is provided with a first end and a second end which are opposite to each other in the second direction, and the first direction is perpendicular to the second direction; the first connecting structure is used for detachably connecting the first end to the frame along a first mounting direction; the second connecting structure is used for detachably connecting the second end to the frame along a second mounting direction, and the first mounting direction is different from the second mounting direction; the drawer is supported on the frame in a sliding mode through the supporting pieces. According to the scheme, the connecting reliability of the supporting piece and the frame can be improved, and the overall stability of the detachable storage cabinet is improved.
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Description

Technical Field

[0001] This disclosure relates to the field of household appliance technology, and more specifically to a detachable storage cabinet. Background Technology

[0002] To address the storage needs people have in all aspects of their daily work and life, drawer-style storage cabinets have emerged. Among the various types of drawer-style storage cabinets commonly found on the market, cloth drawer storage cabinets are particularly favored by users due to their advantages such as being lightweight, stain-resistant, and washable.

[0003] A fabric drawer storage cabinet consists of three main parts: a frame structure, support rails, and fabric drawers. Both the frame structure and the support rails are made of metal. The frame structure defines the outer contour of the fabric drawer storage cabinet, while the support rails are fixed to the frame structure to support the fabric drawers.

[0004] Currently, the supporting rails and frame structure are fixed by welding them together at the factory. The advantage is a very strong connection between the frame structure and the supporting rails, resulting in good overall stability for the fabric drawer storage cabinet. The disadvantage is that the frame structure and supporting rails must be packaged and transported as a single unit, which undoubtedly increases packaging and transportation costs, especially dramatically in the foreign trade sector. Utility Model Content

[0005] The technical problem solved by this disclosure is to provide an improved removable locker.

[0006] To address the aforementioned technical problems, this disclosure provides a detachable storage cabinet, comprising: a frame including at least two main body portions spaced apart along a first direction; a plurality of support members, each support member having a first end and a second end opposite to each other along a second direction, the first direction and the second direction being perpendicular to each other; a first connecting structure for detachably connecting the first end to the frame along a first mounting direction; a second connecting structure for detachably connecting the second end to the frame along a second mounting direction, the first mounting direction and the second mounting direction being opposite to each other; and at least one drawer slidably supported on the frame via the plurality of support members.

[0007] Optionally, the first mounting direction and the second mounting direction are perpendicular to each other.

[0008] Optionally, the first mounting direction is parallel to the second direction.

[0009] Optionally, the second mounting direction is at least parallel to the first direction.

[0010] Optionally, the second installation direction extends sequentially along the first direction and the third direction, with the first direction, the second direction, and the third direction being perpendicular to each other.

[0011] Optionally, for any of the first connection structure and the second connection structure, the connection structure includes: a fixing part disposed in one of the support member and the frame; and an adapter part disposed in the other of the support member and the frame, wherein the fixing part may be coupled or decoupled from the adapter part along the installation direction of the connection structure.

[0012] Optionally, the main body includes a first column and a second column spaced apart along the second direction, the adapter includes a first receiving groove opened on the first column facing the second column, and the fixing part includes an insertion part disposed at the first end, the insertion part being able to be inserted into the first receiving groove or disengaged from the first receiving groove along the second direction.

[0013] Optionally, the support member includes a body portion located on the same side of the first column and the second column, and an extension portion extending from the body portion toward the space between the first column and the second column, the insertion portion being formed at the end of the extension portion.

[0014] Optionally, the fixing part includes a first hook-shaped part extending from the second end along the first direction, and the adapter part includes a second receiving groove disposed on the main body and opening towards the first direction. The first hook-shaped part can be inserted into the second receiving groove along the first direction and then move along a third direction to couple with the second receiving groove, or move in the opposite direction to the insertion direction to disengage from the second receiving groove.

[0015] Optionally, the fixing part includes a second hook-shaped part extending downward from the first end along a third direction, and the adapter part includes a third receiving groove disposed on the main body and opening towards the first direction. The second hook-shaped part can be inserted into the third receiving groove or disengaged from the third receiving groove along the third direction.

[0016] Optionally, the second hook-shaped portion is inverted trapezoidal.

[0017] Optionally, the support member includes: a first plate portion and a second plate portion, the first plate portion supporting the drawer, the second plate portion connected to one side of the first plate portion along a third direction, the second plate portion and the first plate portion having a non-zero included angle, the first connecting structure and the second connecting structure respectively disposed at the ends of the second plate portion along the second direction; a reinforcing rib disposed at the connection between the first plate portion and the second plate portion; wherein the reinforcing rib extends along the second direction to the end of the second plate portion, and / or, the reinforcing rib is located at the connection between the first plate portion and the second plate portion on the side facing the drawer.

[0018] Compared with the prior art, the technical solutions of the embodiments of this disclosure have the following beneficial effects:

[0019] This implementation scheme allows for the detachable frame and support components for separate packaging and transportation, significantly reducing packaging volume and costs in foreign trade scenarios. Furthermore, separate packaging of the support components helps prevent compression during transportation, reducing the risk of damage. Additionally, the two ends of the support component are connected to the frame with different installation directions, ensuring that even if one end of the support component accidentally detaches from the frame during daily use, the other end is less likely to fall off as well. This improves the connection reliability between the support component and the frame, enhancing the overall stability of the detachable storage locker.

[0020] Furthermore, the first installation direction is parallel to the second direction. Thus, the first installation direction is consistent with the direction in which the support extends into or out of the space enclosed by the frame, facilitating the installation and removal of the support. For example, after the frame is erected, when the support is extended into the space enclosed by the frame along the second direction, the first end and the main body are connected conveniently via the first connecting structure.

[0021] Furthermore, the second installation direction extends sequentially along the first and third directions. When the second end is connected to or decoupled from the frame via the second connecting structure, it requires a change in the direction of movement to achieve complete connection or decoupling. Even if the support is accidentally subjected to an external force in a single direction during normal use, the second end is not easily detached from the frame. This ensures the reliability of the connection between the support and the frame.

[0022] Furthermore, the main body includes a first column and a second column spaced apart along a second direction. Along the direction the drawer is pulled out of the frame, a first connecting structure is located in front of the second connecting structure. The first connecting structure acts on the opposing surfaces of the two columns, and the second connecting structure acts on the opposing surfaces of adjacent main body sections. During installation, the support member is inserted into the space enclosed by the frame from the back of the removable storage cabinet along the second direction until the first end is connected to the opposing surfaces of the two columns via the first connecting structure. With the first end connected in place, the second end is close to the opposing surfaces of the main body sections. At this point, slightly pushing the support member along the first direction and then releasing it will connect the second end to the opposing surfaces of the main body sections via the second connecting structure. The entire installation process is simple and ergonomically designed.

[0023] Furthermore, the support member includes a first plate portion and a second plate portion with a non-zero included angle, and a reinforcing rib is provided at the connection between the first plate portion and the second plate portion. This improves the structural strength of the support member. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of a detachable storage cabinet according to an embodiment of this disclosure;

[0025] Figure 2 yes Figure 1Exploded view of a single support component and the main body;

[0026] Figure 3 yes Figure 2 Schematic diagram of the central support component;

[0027] Figure 4 yes Figure 2 A schematic diagram of the central support component from another perspective;

[0028] Figure 5 yes Figure 1 A magnified view of a portion of region A in the middle;

[0029] Figure 6 This is a schematic diagram of a support member in a variation of an embodiment of this disclosure;

[0030] Figure 7 This is an exploded view of the connection area between the support member and the main body in another variation of the present disclosure embodiment;

[0031] Figure 8 yes Figure 7 A schematic diagram of the central support component. Detailed Implementation

[0032] To make the above-mentioned objectives, features and beneficial effects of this disclosure more apparent and understandable, specific embodiments of this disclosure will be described in detail below with reference to the accompanying drawings.

[0033] The embodiments of this disclosure will now be described in detail with reference to the accompanying drawings. The same reference numerals are used for the same parts in each drawing. The embodiments are merely illustrative, and of course, partial substitutions or combinations can be made to the structures shown in different embodiments. In the variations, descriptions of matters common to the foregoing embodiments are omitted, and only the differences are described. In particular, the same effects produced by the same structure will not be mentioned one by one in each embodiment.

[0034] Figure 1 This is a schematic diagram of a detachable storage cabinet 1 according to an embodiment of the present disclosure.

[0035] The detachable storage cabinet 1 in this embodiment can be a drawer-type storage cabinet, such as a fabric drawer storage cabinet. The outer surface of the drawer 11 of the detachable storage cabinet 1 can be made of non-wood materials such as fabric or leather. Furthermore, the outer surface of the detachable storage cabinet 1 can be covered with decorative fabric to enhance the overall appearance.

[0036] The outer contour of the detachable locker 1 is roughly cubic or cuboid, with three perpendicular directions: a first direction (x-direction), a second direction (y-direction), and a third direction (z-direction). The first direction (x-direction) can also be referred to as the width direction of the detachable locker 1, the second direction (y-direction) as the depth direction, and the third direction (z-direction) as the height direction. In this embodiment, the front-back direction refers to the y-direction and its opposite. The front or front side refers to the direction facing the user when the detachable locker 1 is in use, and the rear or rear side refers to the direction away from the user when the detachable locker 1 is in use.

[0037] Specifically, refer to Figure 1 The removable locker 1 may include a frame 10, comprising at least two main body sections 101 spaced apart along the x-direction. The frame 10 may be made of materials such as metal, plastic, or wood. The space between each pair of adjacent main body sections 101 is suitable for accommodating a row of drawers 11 (i.e., at least one drawer 11 arranged along the z-direction). Figure 1 Taking an example of three main body sections 101 spaced apart along the x-direction, two rows of drawers 11 can be arranged side-by-side along the x-direction. For ease of explanation, [the following is a simplified description]. Figure 1 The three main body parts 101 shown are referred to as the first main body part 103, the second main body part 104, and the third main body part 105 along the x-direction.

[0038] Furthermore, for each main body 101, the main body 101 may include two columns 14 spaced apart along the y-direction, referred to as the first column 141 and the second column 142, with the first column 141 located in front of the second column 142 along the y-direction. The space between the two columns 14 may be hollow to further save the total weight and material of the frame 10 and facilitate handling. The opposing sides of the two columns 14 belonging to the same main body 101 are referred to as the first surface 14a, and the opposing surfaces of adjacent main body 101 (i.e., the opposing sides of adjacent first columns 141 and adjacent second columns 142) are referred to as the second surface 14b.

[0039] Furthermore, each main body 101 may also include a crossbar 107 connecting two uprights 14 upwards along the z-direction to connect the two uprights 14 into a whole, thereby improving structural stability. The extension direction of the crossbar 107 is parallel to the y-direction. In some embodiments, the crossbar 107 and each upright 14 are detachably connected, so that the crossbar 107 and the uprights 14 can be removed and packaged separately during packaging and transportation, reducing packaging volume and cost.

[0040] Further reference Figure 1The detachable locker 1 may also include multiple support members 2, each support member 2 extending along the y-direction and detachably connected to the frame 10. For example, Figure 1 The middle support member 2 is detachably connected to the two uprights 14 of the main body 101. For each support member 2, the support member 2 may have a first end 2a and a second end 2b opposite to each other along the extension direction, wherein the first end 2a is located in front of the second end 2b, that is, the direction in which the first end 2a points to the second end 2b is the push-back direction of the drawer 11.

[0041] Furthermore, two support members 2 at the same height connected to two adjacent main body parts 101 form a support member pair 2s, and multiple support member pairs 2s are spaced apart along the z-direction. Still using... Figure 1 For example, the two columns 14 of the first main body 103 are provided with four support members 2 spaced apart along the z-direction, and the two columns 14 of the second main body 104 are provided with four support members 2 spaced apart along the z-direction, forming four support member pairs 2s spaced apart along the z-direction. Similarly, the two columns 14 of the second main body 104 and the two columns 14 of the third main body 105 are provided with four support members 2 spaced apart along the z-direction, forming four support member pairs 2s spaced apart along the z-direction. In other words, the first main body 103 and the third main body 105, located on both sides along the x-direction, are each detachably connected to the support members 2 on only one side, while the second main body 104, located in the middle, is detachably connected to the support members 2 on both sides along the x-direction.

[0042] In practical applications, the number of at least one support member pair 2s provided on two adjacent main body portions 101 can be adjusted as needed. In some embodiments, the number of at least one support member pair 2s provided on the first main body portion 103 and the second main body portion 104 may be different from the number of at least one support member pair 2s provided on the third main body portion 105 and the second main body portion 104.

[0043] Further reference Figure 1 The removable locker 1 may also include at least one drawer 11, the bottom of each drawer 11 being supported by a corresponding support pair 2s, and being slidable along the support pair 2s to be pulled out in the y-direction or pushed back in the opposite direction of the y-direction. For example, the frame 10 is adapted to form the outer contour of the removable locker 1, with at least one drawer 11 supported on the corresponding support pair 2s housed within the space enclosed by the outer contour and being able to be pulled out or pushed back into the space in the y-direction and its opposite direction.

[0044] Further reference Figure 1The detachable storage cabinet 1 also includes a first connecting structure 12 for detachably connecting the first end 2a to the frame 10 along the first installation direction u. During installation, the support member 2 is moved along the first installation direction u until the first end 2a is connected to the first column 141 via the first connecting structure 12. During disassembly, the first end 2a is moved in the opposite direction of the first installation direction u to disconnect the first end 2a from the first column 141.

[0045] Further reference Figure 1 The detachable storage cabinet 1 also includes a second connecting structure 13 for detachably connecting the second end 2b to the frame 10 along the second mounting direction v. During installation, the support member 2 is moved along the second mounting direction v until the second end 2b is connected to the second column 142 via the second connecting structure 13. During disassembly, the second end 2b is moved in the opposite direction of the second mounting direction v until the second end 2b is disconnected from the second column 142.

[0046] Furthermore, along the y-direction, the first connecting structure 12 is located in front of the second connecting structure 13.

[0047] Furthermore, the first installation direction u and the second installation direction v are not in the same direction. That is to say, during installation, the two ends of the support member 2 along the length direction (i.e., the y direction) are connected to the corresponding column 14 with different movement trajectories and directions. During disassembly, the two ends of the support member 2 along the length direction (i.e., the y direction) can be removed from the corresponding column 14 with different movement trajectories and directions.

[0048] Therefore, by adopting this implementation scheme, the frame 10 and the support 2 can be disassembled for separate packaging and transportation, which can greatly save packaging volume and cost in foreign trade scenarios. Furthermore, separate packaging of the support 2 helps avoid compression during transportation, reducing the risk of damage. Furthermore, the two ends of the support 2 are connected to the frame 10 with different installation directions, so even if one end of the support 2 accidentally detaches from the frame 10 during daily use, the other end is less likely to detach as well. Thus, the connection reliability between the support 2 and the frame 10 can be improved, enhancing the overall stability of the detachable storage cabinet 1.

[0049] In some embodiments, the first mounting direction u and the second mounting direction v are perpendicular. During daily use of the removable storage cabinet 1, the probability that the support member 2 is simultaneously subjected to two forces acting in perpendicular directions is low, thus reducing the probability of the first connecting structure 12 and the second connecting structure 13 failing simultaneously. This significantly reduces the possibility of the support member 2 falling off as a whole, achieving reliable support for the drawer 11.

[0050] In some embodiments, the first installation direction u may be parallel to the y direction. During installation, insert the first end 2a into the first upright column 141 along the y direction to complete the connection. During disassembly, pull out the first end 2a from the first upright column 141 in the opposite direction of the y direction.

[0051] Thus, the first installation direction u is consistent with the direction in which the support member 2 extends into or out of the space enclosed by the frame 10, facilitating the installation and disassembly of the support member. For example, after the frame 10 is erected, when the support member 2 is inserted into the space enclosed by the frame 10 along the y direction, the connection between the first end 2a and the main body portion 101 is completed via the first connection structure 12顺势, with convenient operation.

[0052] In some embodiments, the second installation direction v is at least parallel to the x direction. During installation, insert the second end 2b into the second upright column 142 along the x direction (or its opposite direction) to complete the connection. During disassembly, pull out the second end 2b from the second upright column 142 in the opposite direction of the x direction (or the x direction).

[0053] Furthermore, the second installation direction v extends successively along the x direction (or its opposite direction) and the opposite direction of the z direction. Among them, the support member 2 connected to the left side of the second upright column 142 according to the Figure 1 view extends successively along the x direction and the opposite direction of the z direction; the support member 2 connected to the right side of the second upright column 142 according to the Figure 1 view extends successively along the opposite direction of the x direction and the opposite direction of the z direction. That is to say, the second installation direction v may include two different directions. During installation, first move the second end 2b along the x direction (or its opposite direction) towards the second upright column 142, and then press down the second end 2b along the opposite direction of the z direction until the second end 2b and the second upright column 142 are connected via the second connection structure 13. During disassembly, first lift the second end 2b along the z direction, and then pull out the second end 2b from the second upright column 142 in the opposite direction of the x direction (or the x direction). Thus, when the second end 2b is connected to or decoupled from the frame 10 via the second connection structure 13, a turn in the movement direction is required to complete the connection or decoupling completely. Even if the support member 2 is accidentally subjected to an external force in a single direction during daily use, the second end 2b is not easily disengaged from the frame 10. Thus, the connection reliability between the support member 2 and the frame 10 is ensured.

[0054] In a specific implementation, referring to Figures 1 to 5 , for any one of the first connection structure 12 and the second connection structure 13, the connection structure may include: a fixing portion 31 provided on one of the support member 2 and the frame 10; an adapting portion 32 provided on the other of the support member 2 and the frame 10, and the fixing portion 31 may be coupled or decoupled with the adapting portion 32 along the installation direction of the connection structure.

[0055] For the first connection structure 12, the fixing part 31 can be coupled to the adapter part 32 along the first installation direction u to connect the first end 2a to the first column 141. Alternatively, the fixing part 31 can be decoupled from the adapter part 32 in the opposite direction of the first installation direction u to detach the first end 2a from the first column 141.

[0056] For the second connection structure 13, the fixing part 31 can be coupled to the adapter part 32 along the second mounting direction v to connect the second end 2b to the second column 142. Alternatively, the fixing part 31 can be decoupled from the adapter part 32 in the opposite direction of the second mounting direction v to detach the second end 2b from the second column 142.

[0057] In a specific implementation, refer to Figures 1 to 4 The adapter 32 may include a first receiving groove 321 formed on the side of the first column 141 facing the second column 142 (i.e., the first surface 14a of the first column 141). Further, the fixing part 31 may include an insertion part 311 provided at the first end 2a, which may be inserted into the first receiving groove 321 in the y direction or disengaged from the first receiving groove 321 in the opposite direction of the y direction.

[0058] Furthermore, the insertion part 311 located within the first receiving slot 321 and the first receiving slot 321 do not interfere with each other in the y-direction. Thus, the insertion part 311 inserts and exits the first receiving slot 321 in a straight line, and there is no relative movement in the z-direction between the first end 2a and the first column 141 during assembly and disassembly.

[0059] Furthermore, the first surface 14a of the second column 141 can be a complete surface, that is, without any receiving slots. This is beneficial for preventing mistakes, such as preventing the first column 141 and the second column 142 from being installed backwards.

[0060] In some embodiments, the support member 2 may include a body portion 24 located on the same side of the first column 141 and the second column 142, and an extension portion 25 extending from the body portion 24 toward the space between the first column 141 and the second column 142, with an insertion portion 311 formed at the end of the extension portion 25.

[0061] Specifically, the main body 24 is located between adjacent main body parts 101 to increase the contact area with the drawer 11 and ensure reliable support. Furthermore, the extension 25 extends into the hollow area between the two uprights 14 to achieve assembly connection of the first end 2a with the first upright 141 along the y-direction.

[0062] Furthermore, the support member 2 may include a first plate portion 22 located on the side of the main body portion 101 facing the adjacent main body portion 101, the first plate portion 22 being used to support the drawer 11. Specifically, the first plate portion 22 may be in the shape of a long strip, with the large surface of the strip perpendicular to the z-direction and the length direction of the strip parallel to the y-direction. The surface of the first plate portion 22 facing upward along the z-direction is adapted to form a support surface for supporting the drawer 11, and may further serve as a support track for the drawer 11 to slide.

[0063] Furthermore, the support member 2 may also include a second plate portion 23 connected to one side of the first plate portion 22 along the z-direction. For each support member pair 2s, the two first plate portions 22 are located between the two second plate portions 23 along the x-direction; in other words, the two first plate portions 22 are located at the bottom left and right sides of the drawer 11, and the two second plate portions 23 are located at the outside left and right sides of the drawer 11, respectively.

[0064] Furthermore, the second plate portion 23 and the first plate portion 22 have a non-zero included angle. For example, the second plate portion 23 extends upward along the z-direction from the side of the first plate portion 22 toward the main body portion 101. That is, the second plate portion 23 is perpendicular to the first plate portion 22, and the support member 2 is approximately L-shaped. Thus, the second plate portion 23 can act as a limiting stop, restricting the movement trajectory of the drawer 11 to the y-direction and its opposite direction, preventing the drawer 11 from tilting during the pushing and pulling process, which would cause the bottom of the drawer 11 to leave the support track formed by the first plate portion 22 and affect the smoothness of pushing and pulling.

[0065] Furthermore, the first plate portion 22 and the second plate portion 23 are adapted to form the body portion 24. The extension portion 25 can extend a certain distance from the side of the second plate portion 23 near the first end 2a in the x direction and then extend in the y direction to form an insertion portion 311 at the end.

[0066] In some embodiments, the support member 2 can be a metal part, and correspondingly, the extension 25 can be formed by bending the second plate portion 23.

[0067] In some embodiments, the support member 2 can be a plastic part. By designing the shape of the injection mold, a support member 2 with an extension 25 can also be obtained.

[0068] In some embodiments, at the first end 2a, the first plate portion 22 and the extension portion 25 may be flush along the y-direction. (See reference) Figure 1 In the assembled state, part of the structure of the first column 141 is sandwiched between the first plate 22 and the insertion part 311, further ensuring the reliability of the connection between the support member 2 and the first column 141.

[0069] In a specific implementation, continue to refer to Figures 1 to 5The fixing part 31 and the adapter part 32 can be respectively provided on the surfaces of the support member 2 and the main body 101 opposite each other in the x-direction. In this embodiment, the fixing part 31 and the adapter part 32, which are adapted to form the second connection structure 13, are respectively provided on one side of the second surface 14b of the support member 2 and on the second surface 14b.

[0070] Specifically, the fixing part 31 may include a first hook-shaped part 312 extending from the second end 2b in the x direction, and the adapter part 32 may include a second receiving groove 322 disposed on the main body part 101 and opening in the x direction. The first hook-shaped part 312 may be inserted into the second receiving groove 322 in the x direction and then move in the opposite direction of the z direction to couple with the second receiving groove 322, or move in the opposite direction of the insertion direction to disengage from the second receiving groove 322.

[0071] Furthermore, the first hook-shaped portion 312 may be provided on the side of the second plate portion 23 near the second end 2b. For example, the second plate portion 23 extends generally from the second surface 14b of the second column 142 toward the second surface 14b of the first column 141, and the second plate portion 23 is bent in the x direction at both ends along the y direction to form the extension portion 25 and the first hook-shaped portion 312.

[0072] Furthermore, the dimension of the connecting portion of the first hook-shaped part 312 and the second plate part 23 along the z-direction can be smaller than the dimension of the first hook-shaped part 312 itself along the z-direction. The connecting portion is connected to the upper half of the first hook-shaped part 312 along the z-direction. During assembly, after the first hook-shaped part 312 is inserted into the second receiving groove 322 along the x-direction (or its opposite direction), the user releases their grip, and the support 2 falls naturally under gravity until the connecting portion overlaps the lower edge of the second receiving groove 322. At this time, the first hook-shaped part 312 hooks onto the second column 142 along the x-direction.

[0073] Furthermore, the first hook-shaped portion 312 located within the second receiving groove 322 interferes with the second receiving groove 322 in the x-direction. This provides a limit along the x-direction, preventing the support member 2 from unintentionally dislodging from the second receiving groove 322.

[0074] In some embodiments, in the z-direction, the lower edge of the second receiving groove 322 may be higher than the lower edge of the first receiving groove 321. Specifically, the insertion part 311 directly overlaps the lower edge of the first receiving groove 321, while the first hook-shaped part 312 is entirely located inside the second column 142, and the connection between the first hook-shaped part 312 and the second plate part 23 overlaps the lower edge of the second receiving groove 322. By creating a height difference between the lower edges of the two receiving grooves, it can be ensured that the first plate part 22 of the support member 2 assembled to the two columns 14 remains horizontal.

[0075] In some embodiments, the first connecting structure 12 acts on the opposite surfaces of the two uprights 14 (i.e., the first surface 14a), and the second connecting structure 13 acts on the opposite surfaces of adjacent main body parts 101 (i.e., the second surface 14b). During installation, the support member 2 is inserted into the space enclosed by the frame 10 from the back of the removable storage cabinet 1 along the y-direction until the first end 2a is connected to the opposite surfaces of the two uprights 14 via the first connecting structure 12. As the first end 2a is connected in place, the second end 2b is already close to the opposite surfaces of the main body parts 101. At this point, the support member 2 is slightly pushed along the x-direction (or the opposite direction of the x-direction) and then released to connect the second end 2b to the opposite surfaces of the main body parts 101 via the second connecting structure 13. The entire installation process is simple to operate and more ergonomically designed.

[0076] In a specific implementation, continue to refer to Figures 2 to 5 The support member 2 may also include a reinforcing rib 21 disposed at the connection between the first plate portion 22 and the second plate portion 23. Specifically, the provision of the reinforcing rib 21 can increase the thickness at the connection between the first plate portion 22 and the second plate portion 23, which is beneficial to improving the structural strength of the support member 2.

[0077] Furthermore, the reinforcing rib 21 can extend along the y-direction to the end of the second plate portion 23. Thus, the reinforcing rib 21 is provided along the entire length of the support member 2, further improving the structural strength of the support member 2.

[0078] Furthermore, the reinforcing rib 21 can be located at the junction of the first plate portion 22 and the second plate portion 23 on the side facing the drawer 11. That is, the reinforcing rib 21 is located at the junction of the first plate portion 22 and the second plate portion 23 on the side where the two plates face each other.

[0079] For example, the facing surfaces of the first plate portion 22 and the second plate portion 23 can be designed with a large chamfer at the connection point, allowing for a smooth transition between the two surfaces. This smooth transition structure increases the thickness at the connection point, forming a reinforcing rib 21. Furthermore, the connection point of the opposing surfaces of the first plate portion 22 and the second plate portion 23 can still retain a right-angle design.

[0080] In one variation, refer to Figure 6 The reinforcing rib 21 can be located on the side away from the drawer 11 at the connection between the first plate portion 22 and the second plate portion 23. That is, the reinforcing rib 21 is located on the outside of the connection between the first plate portion 22 and the second plate portion 23. For example, at the connection between the first plate portion 22 and the second plate portion 23, the reinforcing rib 21 protrudes from the first plate portion 22 in a direction away from the second plate portion 23 to form the reinforcing rib 21.

[0081] In a specific implementation, continue to refer to Figures 1 to 5The support member 2 may also include a stop 26 disposed at the second end 2b, the stop 26 being used to limit the maximum travel of the drawer 11 in the push-back direction (i.e., the opposite direction of the y-direction). Specifically, the first plate portion 22 can be folded upward in the z-direction at the second end 2b to form a flange, the flange being adapted to form the stop 26 to block the drawer 11 from the rear, preventing the drawer 11 from being pushed back excessively and falling off the frame 10.

[0082] In the above Figures 1 to 5 In a variation of the illustrated embodiment, reference is made to... Figure 7 and Figure 8 The fixing part 31 may include a second hook-shaped part 313 extending downward from the first end 2a in the opposite direction of the z-direction, and the adapter part 32 may include a third receiving groove 323 formed on the second surface 14b of the first column 141. The second hook-shaped part 313 may be inserted into the third receiving groove 323 in the opposite direction of the z-direction or disengaged from the third receiving groove 323 in the z-direction.

[0083] Specifically, the second hook-shaped portion 313 can be formed by bending from the second plate portion 23 toward the second surface 14b. For example, when processing the support member 2, the outline shape of the second hook-shaped portion 313 is first punched out on the second plate portion 23, and then bent to form the second hook-shaped portion 313. The root of the second hook-shaped portion 313 is connected to the second plate portion 23, the end of the second hook-shaped portion 313 extends into the third receiving groove 323, and the root of the second hook-shaped portion 313 can overlap the lower edge of the third receiving groove 323.

[0084] During assembly, the support member 2 is inserted along the y-direction into the space enclosed by the frame 10 and close to the second surface 14b of the two columns 14. First, the first end 2a is pressed down in the opposite direction of the z-direction until the second hook-shaped part 313 extends into the third receiving groove 323. Then, the second end 2b is pushed along the x-direction so that the first hook-shaped part 312 extends into the second receiving groove 322, and then the second end 2b is pressed down in the opposite direction of the z-direction so that the first hook-shaped part 312 falls completely into the second receiving groove 322. At this point, the support member 2 is reliably connected to the two columns 14.

[0085] Furthermore, the closer to the root of the second hook-shaped portion 313, the larger its size. In other words, the second hook-shaped portion 313 can have an inverted trapezoidal structure, with the longer base of the trapezoid located at the root. Thus, during daily use, when the support 2 is pressed down in the opposite direction of the z-axis under the gravity of the drawer 11, the engagement between the third receiving groove 323 and the root of the second hook-shaped portion 313 is more secure, preventing the support 2 from accidentally coming out.

[0086] Furthermore, along the y-direction, the size of the third receiving groove 323 can be larger than the size of the end of the second hook-shaped portion 313, and the size of the third receiving groove 323 can be smaller than the size of the root of the second hook-shaped portion 313. Therefore, during installation, the end of the second hook-shaped portion 313 can easily be inserted into the third receiving groove 323, and during daily use, the root of the second hook-shaped portion 313 and the third receiving groove 323 fit tightly together to achieve a stable connection.

[0087] In some embodiments, the first plate portion 22 may also be provided with a second hook-shaped portion 313 at the first end 2a. For example, the support member 2 may be an L-shaped member, and the two arms of the L-shaped member have completely identical structures. The connection position of the L-shaped member on the main body portion 101 determines that one of the two arms forms the first plate portion 22 and the other forms the second plate portion 23. This improves compatibility, and it is not necessary to distinguish between the left and right support members 2 during installation.

[0088] While the above disclosure is provided, it is not limited thereto. Any person skilled in the art may make various alterations and modifications without departing from the spirit and scope of this disclosure; therefore, the scope of protection of this disclosure shall be determined by the scope defined in the claims.

Claims

1. A detachable storage cabinet, characterized in that, include: The frame includes at least two main body sections spaced apart along a first direction; Multiple support members, each support member having a first end and a second end opposite to each other along a second direction, the first direction and the second direction being perpendicular to each other; A first connecting structure is used to detachably connect the first end to the frame along a first mounting direction; The second connection structure is used to detachably connect the second end to the frame along the second installation direction, wherein the first installation direction and the second installation direction are not in the same direction; At least one drawer is slidably supported on the frame via the plurality of supports.

2. The detachable storage cabinet according to claim 1, characterized in that, The first mounting direction and the second mounting direction are perpendicular; and / or The first mounting direction is parallel to the second direction; and / or The second installation direction is at least parallel to the first direction; and / or The second installation direction extends sequentially along the first direction and the third direction, with the first direction, the second direction, and the third direction being perpendicular to each other.

3. The detachable storage cabinet according to claim 1, characterized in that, For any one of the first connection structure and the second connection structure, the connection structure includes: A fixing part is provided in one of the support member and the frame; An adapter is provided in one of the support member and the frame, and the fixing part can be coupled or decoupled from the adapter along the installation direction of the connection structure.

4. The detachable storage cabinet according to claim 3, characterized in that, The main body includes a first column and a second column spaced apart along the second direction. The adapter includes a first receiving groove opened on the first column facing the second column. The fixing part includes an insertion part disposed at a first end. The insertion part can be inserted into the first receiving groove or disengaged from the first receiving groove along the second direction.

5. The detachable storage cabinet according to claim 4, characterized in that, The support member includes a body portion located on the same side of the first column and the second column, and an extension portion extending from the body portion toward the space between the first column and the second column, the insertion portion being formed at the end of the extension portion.

6. The detachable storage cabinet according to claim 3, characterized in that, The fixing part includes a first hook-shaped part extending from the second end along the first direction, and the adapter part includes a second receiving groove disposed on the main body and opening towards the first direction. The first hook-shaped part can be inserted into the second receiving groove along the first direction and then move along a third direction to couple with the second receiving groove, or move in the opposite direction to the insertion direction to disengage from the second receiving groove.

7. The detachable storage cabinet according to claim 3, characterized in that, The fixing part includes a second hook-shaped part extending downward from the first end in a third direction, and the adapter part includes a third receiving groove disposed on the main body and opening towards the first direction. The second hook-shaped part can be inserted into the third receiving groove or disengaged from the third receiving groove in the third direction.

8. The detachable storage cabinet according to claim 7, characterized in that, The second hook-shaped part is inverted trapezoidal.

9. The detachable storage cabinet according to claim 1, characterized in that, The support member includes: A first plate portion and a second plate portion, wherein the first plate portion is used to support the drawer, and the second plate portion is connected to one side of the first plate portion along a third direction, the second plate portion and the first plate portion have a non-zero included angle, and the first connecting structure and the second connecting structure are respectively disposed at the ends of the second plate portion along the second direction; A reinforcing rib is provided at the connection between the first plate and the second plate. Wherein, the reinforcing rib extends along the second direction to the end of the second plate portion, and / or, the reinforcing rib is located at the junction of the first plate portion and the second plate portion on the side facing the drawer.