Expansion mesh and wardrobe support

By setting splicing and fixing components on both sides of the main body of the wardrobe mesh panel and eliminating the corner sleeves, the problems of large gaps and uneven splicing when expanding the wardrobe mesh frame are solved, achieving the effect of compact structure and reduced cost.

CN224069983UActive Publication Date: 2026-04-03SHENZHEN JUTUO TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

When expanding existing wardrobe racks, the sleeves cause excessive gaps and uneven splicing, resulting in a complex structure and high manufacturing costs.

Method used

An extended mesh panel is designed, which uses splicing and fixing components set on the support frame on both sides of the main body of the mesh panel, eliminating the four corner sleeves, and splicing it with the adjacent mesh frame through splicing and fixing components, thereby reducing gaps and improving structural compactness.

Benefits of technology

This achieves a smooth splicing of the space frame, reduces manufacturing costs, and improves the structural compactness and splicing stability of the wardrobe frame.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an expansion mesh and a wardrobe support, and relates to the technical field of wardrobe supports, and the expansion mesh comprises a mesh main body and a splicing fixing assembly. The mesh main body comprises a square frame which is defined by four supporting frames, and a bearing mesh surface arranged on the frame; the splicing and fixing assemblies are arranged on the supporting frames on the two opposite sides of the net piece body and used for splicing and fixing the net piece body to the supporting frame, provided with the sleeve, of the adjacent net racks on the two sides. Therefore, the splicing structure has the advantages of being compact in structure, smooth in splicing and capable of reducing manufacturing cost.
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Description

Technical Field

[0001] This utility model relates to the field of wardrobe bracket technology, and in particular to an extension mesh and wardrobe bracket. Background Technology

[0002] A simple wardrobe is a convenient and practical storage piece of furniture used to store clothes, shoes, hats, and other items. It typically consists of a wardrobe frame and a fabric cover that fits over the frame. It is especially suitable for environments with limited space. The wardrobe frame usually includes four support rods and a mesh frame with sleeves that is attached and fixed to the four support rods.

[0003] Most existing wire mesh frames are made of metal frames with welded wire. They generally have fixed length and width dimensions. Therefore, if it is necessary to expand the size of a simple wardrobe, multiple wire mesh frames need to be spliced ​​and fixed together, and then fitted onto supporting uprights using sleeves to increase the size. However, because the sleeves have a certain thickness, when splicing multiple wire mesh frames to increase the size of the wardrobe, the sleeves will make the gaps between adjacent wire mesh frames too large, and the top wire mesh frame will not be installed evenly. In addition, there are two uprights at adjacent splicing positions, resulting in a complex structure and high manufacturing costs.

[0004] Therefore, there is a need to design an extended mesh panel and wardrobe bracket that is compact, has a smooth splicing structure, and can reduce manufacturing costs. Utility Model Content

[0005] The purpose of this utility model is to address the defects and deficiencies of the existing technology by providing an extended mesh panel and wardrobe bracket, which solves at least one of the aforementioned technical problems. It has the advantages of compact structure, smooth splicing, and reduced manufacturing costs.

[0006] To achieve the above objectives, this utility model provides an extended mesh panel, comprising:

[0007] The main body of the mesh includes a square frame surrounded by four supporting frames, and a load-bearing mesh surface disposed on the frame;

[0008] The splicing and fixing components are set on the opposite two side support frames of the main body of the mesh, and are used to splice and fix the main body of the mesh to the support frame of the side with the sleeve of the adjacent mesh frame on both sides.

[0009] Optionally, the splicing and fixing assembly on each side includes: a plurality of n-shaped hanging connectors and a corresponding number of threaded locking components;

[0010] The n-shaped hanging connector is fixed to the outside of the support frame with its opening facing downwards;

[0011] The threaded locking member is threadedly connected to one side support plate of the n-shaped hanging connector and passes through the support frame of the adjacent space frame to fix the support frame of the adjacent space frame in the ear groove of the n-shaped hanging connector.

[0012] Optionally, a plurality of the n-shaped hanging connectors and a corresponding number of the threaded locking members are spaced apart along the length direction of the support frame to splice and fix the support frame on this side to the support frame of the adjacent space frame.

[0013] Optionally, the splicing and fixing assembly on each side includes: a plurality of hook connectors and a corresponding number of threaded locking assemblies;

[0014] The hook connector is fixed inside the support frame, and its hook-shaped head is positioned outside the support frame.

[0015] The threaded locking assembly passes through the support frame of the adjacent space frame and is threadedly connected to the hook connector.

[0016] Optionally, the hook connector includes: a hook connecting plate and the hook-shaped head;

[0017] The hook connecting plate is welded and fixed to the inner side of the support frame, and passes through the top of the support frame and bends outward to form the hook-shaped head;

[0018] The threaded locking assembly includes: a large-head screw, a washer, and a cap;

[0019] The large-headed screw passes sequentially through the washer, the support frame of the adjacent mesh frame, the support frame on the side of the mesh body without the sleeve, and the hook connecting plate, and is threadedly connected to the cap.

[0020] Optionally, a plurality of the hook connectors and a corresponding number of the threaded locking assemblies are spaced apart along the length of the support frame to splice and fix the support frame on this side to the support frame of the adjacent space frame.

[0021] Optionally, the supporting frame includes a top rod, a bottom rod, and a connecting curved rod in the shape of a triangular wave, disposed between the top rod and the bottom rod; the bearing mesh surface is composed of several metal wires welded crisscrossingly onto the supporting frame; and the sleeve is a tapered sleeve with an upper aperture smaller than a lower aperture.

[0022] Another aspect of this utility model provides a wardrobe bracket, comprising: a first base frame and a second base frame, each with sleeves at all four corners, and an extension mesh as described above; the extension mesh is spliced ​​and fixed between the first base frame and the second base frame by the splicing and fixing assembly; the sleeves of the first base frame and the second base frame are sleeved and fixed at the top and / or bottom of the support pole.

[0023] Compared with the prior art, the advantages of this application are:

[0024] Because splicing and fixing components are installed on the supporting frames on both sides of the main body of the mesh panel, and the sleeves at the four corners are eliminated, when it is necessary to splice the extended mesh panel between two adjacent mesh frames, the supporting frames on both sides of the main body of the mesh panel can be spliced ​​and fixed to the supporting frames on the sleeve side of the adjacent mesh frame using the splicing and fixing components. This reduces the gap at the splicing point by the thickness of one sleeve, resulting in a more compact structure between the spliced ​​wardrobe bracket mesh frames and preventing uneven splicing caused by differences in the taper of the two sleeves. It also reduces the number of sleeves by four, further lowering the material and cost of production, thus giving it the advantage of reduced manufacturing costs. Attached Figure Description

[0025] 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 embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0026] Figure 1 This is a schematic diagram of the wardrobe bracket structure according to Embodiment 1 of this utility model;

[0027] Figure 2 This is a partial exploded view of the structure of the wardrobe bracket according to Embodiment 1 of this utility model;

[0028] Figure 3 This is a partial exploded view of the structure of the extended mesh in Embodiment 1 of this utility model;

[0029] Figure 4 This is an exploded structural diagram of the splicing and fixing component according to Embodiment 1 of this utility model;

[0030] Figure 5 This is a partial exploded view of the extended mesh structure in Embodiment 2 of this utility model;

[0031] Figure 6 This is an exploded structural diagram of the splicing and fixing component according to Embodiment 2 of this utility model.

[0032] Explanation of reference numerals in the attached figures

[0033] 1000-Wardrobe Rack;

[0034] 100-Extended mesh;

[0035] 1-Main body of the mesh; 11-Frame; 111-Supporting frame; 112-Top rod; 113-Bottom rod; 114-Connecting curved rod; 12-Bearing mesh surface;

[0036] 2-Assembly and fixing component; 21-n-shaped hanging connector; 212-Support plate; a-Ear groove; 22-Threaded locking component; 23-Hook connector; 231-Hook connecting plate; 232-Hook head; 24-Threaded locking component; 241-Big head screw; 242-Washer; 243-Cap;

[0037] 200 - First basic space frame;

[0038] 300 - Second basic space frame;

[0039] 400-sleeve;

[0040] 500 - Support pole. Detailed Implementation

[0041] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0042] Please refer to Figures 1 to 4 This utility model embodiment provides an extended mesh 100, including: a mesh body 1 and a splicing and fixing component 2.

[0043] The main body 1 of the mesh panel includes a frame 11 and a supporting mesh surface 12. The frame 11 is square and is formed by four supporting side frames 111. The supporting mesh surface 12 is disposed on the frame 11. It is used to support and store clothing or to hang clothes hangers after the wardrobe support 1000 is formed.

[0044] The splicing and fixing components 2 are disposed on the opposite side support frames 111 of the mesh body 1, and are used to splice and fix the mesh body 1 to the support frame 111 on the side with the sleeve 400 of the adjacent mesh frames on both sides. The splicing and fixing components 2 can be detachable or fixedly disposed on the opposite side support frames 111 of the mesh body 1. When it is necessary to increase the size of the wardrobe bracket 1000, the support frames 111 on both sides of the mesh body 1 of the extended mesh 100 are spliced ​​and fixed to the support frame 111 on the side with the sleeve 400 of the adjacent mesh frame using the splicing and fixing components 2. The corresponding support poles 500 are then fitted onto the sleeve 400 positions of the adjacent mesh frames. It is understood that the adjacent mesh frames can be basic mesh frames with sleeves 400 at all four corners; no specific limitation is made here.

[0045] Because splicing and fixing components 2 are provided on the supporting frame 111 on both sides of the main body 1 of the mesh panel, and the sleeves 400 at the four corners are eliminated, when the extended mesh panel 100 needs to be spliced ​​between two adjacent mesh frames, the supporting frame 111 on both sides of the main body 1 of the mesh panel can be spliced ​​and fixed to the supporting frame 111 on the side of the adjacent mesh frame with the sleeve 400 by means of the splicing and fixing components 2. In this way, the gap of one sleeve 400 thickness can be reduced at the splicing position, making the structure between the spliced ​​wardrobe bracket 1000 mesh frames compact and preventing uneven splicing due to the taper difference between the two sleeves 400; at the same time, the reduction of four sleeves 400 further reduces the material and cost of production, thus giving it the advantage of reduced manufacturing costs.

[0046] To achieve rapid splicing of the main body 1 of the mesh panel with the adjacent mesh frame, optionally, please refer to... Figures 2 to 4 In this embodiment, each side splicing and fixing assembly 2 includes two n-shaped hanging connectors 21 and two threaded locking members 22. The n-shaped hanging connectors 21 are fixed to the outside of the support frame 111 with their openings facing downwards. Specifically, one side support plate 212 of the n-shaped hanging connector 21 is welded to the outside of the support frame 111, ensuring that the opening faces downwards. The threaded locking member 22 is threadedly connected to the one side support plate 212 of the n-shaped hanging connector 21 and passes through the support frame 111 of the adjacent mesh frame to fix the support frame 111 of the adjacent mesh frame in the ear groove a of the n-shaped hanging connector 21. That is, when the n-shaped hanging connector 21 overlaps the mesh body 1 onto the support frame 111 of the adjacent mesh frame, the threaded locking member 22 locks the support frame 111 of the adjacent mesh frame in the ear groove a of the n-shaped hanging connector 21, thereby realizing the splicing and fixing of the extended mesh 100 with the adjacent mesh frame. Of course, in other embodiments, the number of n-shaped hanging connectors 21 and threaded locking parts 22 is not limited to two, but can also be one, three, four or more, as long as it can achieve rapid splicing of the mesh body 1 and the adjacent mesh frame.

[0047] To ensure a smoother splicing of the extended mesh panel 100 with the adjacent mesh frame, optionally, please refer to... Figure 3 In this embodiment, two n-shaped hanging connectors 21 and threaded locking members 22 are spaced apart along the length of the support frame 111 to smoothly splice and fix the support frame 111 on this side to the support frame 111 of the adjacent space frame. Of course, in other embodiments, the number of n-shaped hanging connectors 21 and threaded locking members 22 is not limited to two; as long as there are two or more, they can be spaced apart along the length of the support frame 111.

[0048] Alternatively, please refer to Figure 2 and Figure 3In this embodiment, the supporting frame 111 includes a top rod 112, a bottom rod 113, and a connecting curved rod 114 arranged between the top rod 112 and the bottom rod 113 in a triangular wavy shape. Specifically, the top rod 112 and the bottom rod 113 can be made of steel or alloy rods. The curved rod can be made of steel or alloy wire, which is bent and welded between the top rod 112 and the bottom rod 113. This can improve the supporting strength of the mesh body 1. The bearing mesh surface 12 is composed of several metal wires welded crisscrossingly on the supporting frame 111. The sleeve 400 is a tapered sleeve 400 with an upper hole diameter smaller than a lower hole diameter. This facilitates the insertion of the sleeve 400 and its fixing onto the fixed sleeve 400 (not shown in the figure) with a tapered outer circumference corresponding to the supporting upright 500.

[0049] Please refer to Figure 1 and Figure 2 Another aspect of this utility model embodiment provides a wardrobe bracket 1000, including: a first base mesh frame 200 and a second base mesh frame 300, each with sleeves 400 at its four corners, and an extension mesh panel 100 as described above. The extension mesh panel 100 is spliced ​​and fixed between the first base mesh frame 200 and the second base mesh frame 300 by splicing and fixing components 2; the sleeves 400 of the first base mesh frame 200 and the second base mesh frame 300 are sleeved and fixed at the top and / or bottom positions of the support pole 500. It can be understood that the structure of the first base mesh frame 200 and the second base mesh frame 300 is basically the same as that of the extension mesh panel 100, except that the four corners of the mesh panel body 1 of the base mesh frame have sleeves 400, and the splicing and fixing components 2 are not included. Since the wardrobe bracket 1000 has all the structure and connection relationship of the extension mesh panel 100, it has all the advantages of the extension mesh panel 100, which will not be elaborated here.

[0050] Example 2

[0051] This embodiment is basically the same as Embodiment 1, except for the specific structure of the splicing and fixing component 2 and the connection method with the supporting frame 111 of the mesh body 1.

[0052] Alternatively, please refer to Figure 5 and Figure 6In this embodiment, each side splicing and fixing component 2 includes: two hook connectors 23 and two threaded locking components 24. The hook connectors 23 are fixed inside the support frame 111, and their hook-shaped heads 232 are positioned outside the support frame 111. The threaded locking components 24 pass through the support frame 111 of the adjacent mesh frame and are threadedly connected to the hook connectors 23. This allows the hook connectors 23 to be quickly attached to the support frame 111 on the side of the adjacent mesh frame with the sleeve 400 using their hook-shaped heads 232. Of course, in other embodiments, the number of hook connectors 23 and threaded locking components 24 is not limited to two; it can also be one, three, four, or more, as long as it enables the rapid splicing of the mesh body 1 with the adjacent mesh frame.

[0053] Optionally, in this embodiment, the hook connector 23 includes a hook connecting plate 231 and a hook-shaped head 232. The threaded locking assembly 24 includes a large-head screw 241, a washer 242, and a cap 243.

[0054] The hook connecting plate 231 is welded and fixed to the inside of the support frame 111, and passes through the top of the support frame 111 and bends outward to form a hook-shaped head 232. When the hook connector 23 connects the mesh body 1 to the support frame 111 of the adjacent mesh frame through the hook-shaped head 232, the large-head screw 241 passes through the washer 242, the support frame 111 of the adjacent mesh frame, the support frame 111 of the mesh body 1 and the hook connecting plate 231 in sequence, and is threaded and locked to the cap 243.

[0055] Optionally, in this embodiment, two hook connectors 23 and two threaded locking assemblies 24 are spaced apart along the length of the support frame 111 of the mesh body 1, so as to splice and fix the support frame 111 on this side to the support frame 111 of the adjacent mesh frame. Of course, in other embodiments, the number of hook connectors 23 and threaded locking assemblies 24 is not limited to two; as long as there are two or more, they can be spaced apart along the length of the support frame 111.

[0056] The above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit it. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the substance of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. An extended mesh, characterized in that, include: The main body of the mesh includes a square frame surrounded by four supporting frames, and a load-bearing mesh surface disposed on the frame; The splicing and fixing components are set on the opposite two side support frames of the main body of the mesh, and are used to splice and fix the main body of the mesh to the support frame of the side with the sleeve of the adjacent mesh frame on both sides.

2. The extended mesh as described in claim 1, characterized in that, Each side of the splicing and fixing assembly includes: a plurality of n-shaped hanging connectors and a corresponding number of threaded locking components; The n-shaped hanging connector is fixed to the outside of the support frame with its opening facing downwards; The threaded locking member is threadedly connected to one side support plate of the n-shaped hanging connector and passes through the support frame of the adjacent space frame to fix the support frame of the adjacent space frame in the ear groove of the n-shaped hanging connector.

3. The extended mesh as described in claim 2, characterized in that, Several of the n-shaped hanging connectors and a corresponding number of the threaded locking members are spaced apart along the length of the support frame to splice and fix the support frame on this side to the support frame of the adjacent space frame.

4. The extended mesh as described in claim 1, characterized in that, Each side of the splicing and fixing assembly includes: a number of hook connectors and a corresponding number of threaded locking assemblies; The hook connector is fixed inside the support frame, and its hook-shaped head is positioned outside the support frame. The threaded locking assembly passes through the support frame of the adjacent space frame and is threadedly connected to the hook connector.

5. The extended mesh as described in claim 4, characterized in that, The hook connector includes: a hook connecting plate and the hook-shaped head; The hook connecting plate is welded and fixed to the inner side of the support frame, and passes through the top of the support frame and bends outward to form the hook-shaped head; The threaded locking assembly includes: a large-head screw, a washer, and a cap; The large-headed screw passes sequentially through the washer, the support frame of the adjacent mesh frame, the support frame on the side of the mesh body without the sleeve, and the hook connecting plate, and is threadedly connected to the cap.

6. The extended mesh as described in claim 4, characterized in that, Several hook connectors and a corresponding number of threaded locking assemblies are spaced apart along the length of the support frame to splice and fix the support frame on this side to the support frame of the adjacent space frame.

7. The extended mesh as described in claim 1, characterized in that, The supporting frame includes: a top rod, a bottom rod, and a connecting curved rod in the shape of a triangular wave, disposed between the top rod and the bottom rod; the bearing mesh surface is composed of several metal wires welded crisscrossingly onto the supporting frame; the sleeve is a conical sleeve with an upper hole diameter smaller than a lower hole diameter.

8. A wardrobe rack, characterized in that, include: A first base space frame and a second base space frame, each with sleeves at all four corners, and an extended mesh as described in any one of claims 1-7; the extended mesh is spliced ​​and fixed between the first base space frame and the second base space frame by the splicing and fixing assembly; the sleeves of the first base space frame and the second base space frame are sleeved and fixed at the top and / or bottom of the supporting upright.