Expansion mesh and wardrobe frame

US20260294103A1Pending Publication Date: 2026-10-01GAATU INC
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Patent Information

Application Number
US19/463173
Authority / Receiving Office
US · United States
Patent Type
Applications(United States)
Current Assignee / Owner
Filing Date
2026-01-29
Publication Date
2026-10-01

AI Technical Summary

Technical Problem

However, since the sleeve is provided with a certain thickness, when the size of the wardrobe is increased by splicing a plurality of mesh racks together, the sleeve makes a gap between two adjacent mesh racks too large, resulting in uneven mounting of a top mesh rack.

Benefits of technology

[0005]In view of the defects and shortcomings in the prior art, an objective of the present disclosure is to provide an expansion mesh and a wardrobe frame, which at least solve one of the technical problems and have the advantages of compact structure, smooth splicing and lower manufacturing cost.

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Abstract

An expansion mesh and a wardrobe frame relate to the technical field of wardrobe frames. The expansion mesh includes a mesh panel, sleeves, and a splicing and fixing assembly. The mesh panel includes a frame that is surrounded by four support side frames and is in a square shape, and a bearing mesh surface arranged on the frame. The sleeves are correspondingly arranged at two corners at one side of the mesh panel and configured to be sleeved and fixed on a support rod. The splicing and fixing assembly is arranged on a support side frame at another side of the mesh panel that is not provided with the sleeves, and configured to splice and fix the support side frame at the another side to a support side frame at one side of an adjacent mesh rack provided with the sleeves.
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Description

FIELD OF THE DISCLOSURE

[0001] The present disclosure relates to the technical field of wardrobe frames, and in particular, to an expansion mesh and a wardrobe frame.BACKGROUND OF THE DISCLOSURE

[0002] A simple wardrobe, a convenient and practical storage furniture, may be used to store clothes, shoes, hats and other articles, and generally includes a wardrobe frame and a fabric cover mounted outside the wardrobe frame. The simple wardrobe is particularly suitable in environments where space is limited. The wardrobe frame generally includes four support rods and a mesh rack sleeved and fixed on the four support rods and provided with sleeves.

[0003] Most of the existing mesh racks are made of metal wires fixed and welded on a metal frame. The mesh rack is generally provided with a fixed length and width. Therefore, if a size of the simple wardrobe needs to be expanded, a plurality of mesh racks need to be spliced and fixed together, and sleeved on support rods by sleeves on the mesh racks, so that the size of the simple wardrobe may be increased. However, since the sleeve is provided with a certain thickness, when the size of the wardrobe is increased by splicing a plurality of mesh racks together, the sleeve makes a gap between two adjacent mesh racks too large, resulting in uneven mounting of a top mesh rack. Meanwhile, there are two rods at adjacent splicing positions, resulting in complex structures and high manufacturing cost.

[0004] Therefore, an expansion mesh and a wardrobe frame with compact structures, smooth splicing and reduced manufacturing cost need to be designed.SUMMARY OF THE DISCLOSURE

[0005] In view of the defects and shortcomings in the prior art, an objective of the present disclosure is to provide an expansion mesh and a wardrobe frame, which at least solve one of the technical problems and have the advantages of compact structure, smooth splicing and lower manufacturing cost.

[0006] To achieve the foregoing objective, one aspect of the present disclosure provides an expansion mesh, which includes a mesh panel, sleeves, and a splicing and fixing assembly. The mesh panel includes a frame that is surrounded by four support side frames and is in a square shape, and a bearing mesh surface arranged on the frame. The sleeves are correspondingly arranged at two corners at one side of the mesh panel and configured to be sleeved and fixed on a support rod. T splicing and fixing assembly is arranged on a support side frame at another side of the mesh panel that is not provided with the sleeves, and configured to splice and fix the support side frame at the another side of the mesh panel to a support side frame at one side of an adjacent mesh rack that is provided with the sleeves.

[0007] Optionally, the splicing and fixing assembly includes a plurality of hook connectors and a plurality of thread locking assemblies with a corresponding number of the plurality of hook connectors. The hook connector is fixedly disposed on an inner side of the support side frame, and a hook-shaped head of the hook connector is arranged towards an outer side of the support side frame. The thread locking assembly passes through the support side frame of the adjacent mesh rack and is threadedly connected to the hook connector.

[0008] Optionally, the hook connector includes a hook connecting plate and the hook-shaped head. The hook connecting plate is weldedly fixed on the inner side of the support side frame, and passes through a top of the support side frame and is bent outward to form the hook-shaped head. The thread locking assembly includes a first large head screw, a washer and a first cap. The first large head screw sequentially passes through the washer, the support side frame of the adjacent mesh rack, the support side frame at the another side of the mesh panel that is not provided with the sleeves, and the hook connecting plate, and is threadedly connected to the first cap.

[0009] Optionally, the plurality of hook connectors and the plurality of thread locking assemblies with the corresponding number of the plurality of hook connectors are arranged at intervals along a length direction of the support side frame, so that the support side frame at the side is spliced and fixed with the support side frame of the adjacent mesh rack.

[0010] Optionally, the splicing and fixing assembly includes a plurality of C-shaped buckling members, a plurality of pressing plates with a corresponding number of the plurality of C-shaped buckling members, and a plurality of thread fixing assemblies with the corresponding number of the plurality of C-shaped buckling members. The C-shaped buckling member and the pressing plate are configured to wrap and dock the support side frame at the another side of the mesh panel that is not provided with the sleeves with the support side frame of the adjacent mesh rack, and are locked and fixed by the thread fixing assembly.

[0011] Optionally, the thread fixing assembly includes a second large head screw and a second cap. The second large head screw sequentially passes through the pressing plate, the support side frame of the adjacent mesh rack, the support side frame at the another side of the mesh panel that is not provided with the sleeves, and the C-shaped buckling member, and is threadedly connected to the second cap.

[0012] Optionally, the plurality of C-shaped buckling members, the plurality of pressing plates and the plurality of thread fixing assemblies are arranged at intervals along a length direction of the support side frame, so that the support side frame at the side is spliced and fixed with the support side frame of the adjacent mesh rack.

[0013] Optionally, the splicing and fixing assembly includes a U-shaped hanging buckle member, an L-shaped pressing member, and a threaded locking member. The U-shaped hanging buckle member is arranged inverted within an inner side of the support side frame at the another side of the mesh panel that is not provided with the sleeves, and is hooked onto the support side frame of the adjacent mesh rack. The L-shaped pressing member is arranged opposite to the U-shaped hanging buckle member, and the L-shaped pressing member and the U-shaped hanging buckle member enclose to form a tubular clamping structure for accommodating two support side frames that are adjacent to each other. The threaded locking member sequentially passes through the L-shaped pressing member and the two support side frames that are adjacent to each other, and is threadedly connected to the U-shaped hanging buckle member.

[0014] Optionally, the U-shaped hanging buckle member includes a first vertical plate, a second vertical plate, and a first horizontal plate connecting the first vertical plate and the second vertical plate. The first vertical plate is fixed to an inner side of the support side frame, a middle of the second vertical plate is provided with a clearance notch for fitting a vertical plate of the L-shaped pressing member, and the first vertical plate is provided with a threaded hole corresponding to the clearance notch for being threadedly connected to the threaded locking member.

[0015] Optionally, a height of the first vertical plate is greater than a height of the second vertical plate.

[0016] Optionally, the first vertical plate and the second vertical plate are each provided with a plurality of vertical notches spaced apart in a length direction thereof for avoiding metal wires of the bearing mesh surface.

[0017] Optionally, the threaded locking member is a threaded rod, and further includes a nut threadedly connected to an outer end of the threaded rod. Multiple splicing and fixing assemblies are spaced apart along a length direction of the support side frame.

[0018] Optionally, the expansion mesh further includes an intermediate sleeve. The intermediate sleeve is arranged in a middle of the support side frame at the one side that is provided with the sleeves and is configured to be sleeved and fixed with a middle support rod.

[0019] Optionally, the support side frame includes a top rod, a bottom rod, and a connecting curved rod arranged between the top rod and the bottom rod and in a triangular wavy line shape. The bearing mesh surface is composed of a plurality of metal wires welded on the support side frame in a criss-cross mode; and the sleeve is a conical sleeve with an upper aperture smaller than a lower aperture.

[0020] Another aspect of the present disclosure provides a wardrobe frame, which includes a plurality of supporting vertical rods, a basic mesh rack provided with sleeves at four corners and the expansion mesh described above. The expansion mesh is spliced and fixed with a support side frame at one side of the basic mesh rack by the splicing and fixing assembly; and the basic mesh rack and the sleeves of the expansion mesh are sleeved and fixed at corresponding top and bottom positions of the plurality of supporting vertical rods.

[0021] Compared with the prior art, the present disclosure has the following advantages.

[0022] The mesh panel is only provided with the sleeves at the two corners on one side and includes the splicing and fixing assembly. Therefore, when the expansion mesh needs to be spliced to an adjacent mesh rack, the support side frame at the another side that is not provided with the sleeves is spliced and fixed with a support side frame at one side of the adjacent mesh rack that is provided with the sleeves by the splicing and fixing assembly. Therefore, a gap of a thickness of one sleeve may be reduced at the splicing position, so that the spliced wardrobe frame mesh rack has a compact structure, and the phenomenon of uneven splicing caused by a difference in a taper between two sleeves may be avoided; meanwhile, two sleeves are reduced to further reduce the manufacturing materials and costs, which has the advantage of reducing manufacturing costs.BRIEF DESCRIPTION OF THE DRAWINGS

[0023] To more clearly illustrate the technical solution in the embodiments of the present disclosure or in the prior art, the accompanying drawings required to be used in the description of the embodiments or the prior art are briefly introduced below. It is obvious that the accompanying drawings in the description below are only embodiments of the present disclosure, and those of ordinary skill in the art can obtain other accompanying drawings according to these accompanying drawings without creative efforts.

[0024] FIG. 1 is a schematic structural diagram of a wardrobe frame according to Embodiment 1 of the present disclosure;

[0025] FIG. 2 is a partially enlarged view of part A of FIG. 1;

[0026] FIG. 3 is a schematic exploded diagram of a partial structure of an expansion mesh according to Embodiment 1 of the present disclosure;

[0027] FIG. 4 is a schematic diagram of an exploded structure of a splicing and fixing assembly according to Embodiment 1 of the present disclosure;

[0028] FIG. 5 is a schematic structural diagram of a wardrobe frame according to Embodiment 2 of the present disclosure;

[0029] FIG. 6 is a partially enlarged view of part B of FIG. 5.

[0030] FIG. 7 is a schematic exploded diagram of a partial structure according to Embodiment 2 of the present disclosure;

[0031] FIG. 8 is a schematic exploded diagram of a partial structure of the expansion mesh according to Embodiment 2 of the present disclosure;

[0032] FIG. 9 is a schematic diagram of an exploded structure of the splicing and fixing assembly according to Embodiment 2 of the present disclosure;

[0033] FIG. 10 is a schematic diagram of a structure of the expansion mesh spliced and fixed with a basic mesh rack according to Embodiment 3 of the present disclosure;

[0034] FIG. 11 is a partially enlarged view of part of C of FIG. 10;

[0035] FIG. 12 is a schematic diagram of an exploded structure of the expansion mesh and the basic mesh rack according to Embodiment 3 of the present disclosure;

[0036] FIG. 13 is a schematic exploded diagram of a partial structure of the expansion mesh according to Embodiment 3 of the present disclosure;

[0037] FIG. 14 is a schematic exploded diagram of a partial structure of the

[0038] splicing and fixing assembly according to Embodiment 3 of the present disclosure; and

[0039] FIG. 15 is a schematic exploded diagram of a partial structure of the splicing and fixing assembly from another perspective according to Embodiment 3 of the present disclosure.Descriptions of reference numerals:

[0040] 1000: wardrobe frame;

[0041] 100: expansion mesh;

[0042] 1: mesh panel; 11: frame; 111: support side frame; 112: top rod; 113: bottom rod; 114: connecting curved rod; 12: bearing mesh surface;

[0043] 2: sleeve;

[0044] 3: intermediate sleeve;

[0045] 41: hook connector; 411: hook connecting plate; 412: hook-shaped head; 42: thread locking assembly; 421: first large head screw; 422: washer; 423: first cap;

[0046] 51: C-shaped buckling member; 52: pressing plate; 53: thread fixing assembly; 531: second large head screw; 532: second cap;

[0047] 61: U-shaped hanging buckle member; 611: first vertical plate; o1: threaded hole; 612: first horizontal plate; 613: second vertical plate; o2: clearance notch; o3: vertical notch; 62: L-shaped pressing member; o4: through hole; 63: threaded rod; 64: nut;

[0048] 200: basic mesh rack; and

[0049] 210: support rod.DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENTS

[0050] The technical solutions in the embodiments of the present disclosure are

[0051] clearly and fully described below with reference to the accompanying drawings in the embodiments of the present disclosure.Embodiment 1

[0052] Referring to FIGS. 1-9, an embodiment of the present disclosure provides an expansion mesh 100, which includes a mesh panel 1, sleeves 2, and a splicing and fixing assembly.

[0053] The mesh panel 1 includes a frame 11 and a bearing mesh surface 12. The frame 11 is square and is surrounded by four support side frames 111. The bearing mesh surface 12 is arranged on the frame 11, and is configured to support and store clothes, or hang hangers after the wardrobe frame 1000 is formed.

[0054] The sleeves 2 are correspondingly arranged at two corners at one side of the mesh panel 1 and configured to be sleeved and fixed on a support rod 210. That is, the sleeves 2 are correspondingly arranged at corner regions where a shorter support side frame 111 at the one side is correspondingly connected to two longer support side frames 111. Specifically, the sleeves 2 are correspondingly arranged at the two corners at the one side of the mesh panel 1 by welding.

[0055] The splicing and fixing assembly is arranged on a support side frame 111 at another side of the mesh panel 1 and that is not provided with the sleeve 2, and is configured to splice and fix the support side frame 111 at the another side to a support side frame 111 at one side of an adjacent mesh rack that is provided with the sleeves 2. That is, the splicing and fixing assembly can be detachable, or can be fixedly arranged on the support side frame 111 at the another side of the mesh panel 1 that is not provided with the sleeves 2. When a size of the wardrobe frame 1000 needs to be increased, the support side frame 111 at the another side of the mesh panel 1 of the expansion mesh 100 that is not provided with the sleeves 2 is spliced and fixed with a support side frame 111 at the one side of the adjacent mesh rack that is provided with the sleeves 2 by the splicing and fixing assembly, and the support rods 210 are correspondingly sleeved at the position of the sleeve 2. It can be understood that the adjacent mesh rack can be a basic mesh rack 200 provided with the sleeves 2 at four corners, or another expansion mesh 100, but the present disclosure is not limited herein.

[0056] The mesh panel 1 is only provided with the sleeves 2 at the two corners on the one side and includes the splicing and fixing assembly. Therefore, when the expansion mesh 100 needs to be spliced to the adjacent mesh rack, the support side frame 111 at the another side that is not provided with the sleeves 2 is spliced and fixed with the support side frame 111 at the one side of the adjacent mesh rack that is provided with the sleeves 2 by the splicing and fixing assembly. Therefore, a gap of a thickness of one sleeve 2 may be reduced at the splicing position, so that the spliced mesh rack of the wardrobe frame 1000 has a compact structure, and the phenomenon of uneven splicing caused by a difference in a taper between two sleeves 2 may be avoided; meanwhile, two sleeves 2 are reduced to further reduce the manufacturing materials and costs, which has the advantage of reducing manufacturing costs.

[0057] To achieve the quick splicing between the mesh panel 1 and the adjacent mesh rack, optionally, referring to FIGS. 2-4, in the present embodiment, the splicing and fixing assembly includes two hook connectors 41 and two thread locking assemblies 42. The hook connector 41 is fixedly disposed on an inner side of the support side frame 111, and a hook-shaped head 412 of the hook connector is arranged towards an outer side of the support side frame 111. The thread locking assembly 42 passes through the support side frame 111 of the adjacent mesh rack and is threadedly connected to the hook connector 41. In this way, the hook connector 41 is quickly engaged to the support side frame 111 at the one side of the adjacent mesh rack that is provided with the sleeves 2 by using the hook-shaped head 412. When the hook connector 41 engages the mesh panel 1 to the support side frame 111 of the adjacent mesh rack, the support side frame 111 at the another side of the expansion mesh 100 that is not provided with the sleeves 2 and the support side frame 111 of the adjacent mesh rack are locked on the hook connector 41 through the thread locking assembly 42 for fixing. Certainly, in other embodiments, the number of the hook connectors 41 and the thread locking assemblies 42 is not limited to two, and can be one, three, four or more, as long as the quick connection between the mesh panel 1 and the adjacent mesh rack can be achieved.

[0058] Optionally, referring toFIG. 4, in the present embodiment, the hook connector 41 includes a hook connecting plate 411 and a hook-shaped head 412. The thread locking assembly 42 includes a first large head screw 421, a washer 422, and a first cap 423.

[0059] The hook connecting plate 411 is weldedly fixed on the inner side of the support side frame 111, and passes through a top of the support side frame 111 and is bent outward to form the hook-shaped head 412. When the hook connector 41 engages the mesh panel 1 to the support side frame 111 of the adjacent mesh rack through the hook-shaped head 412, the first large head screw 421 sequentially passes through the washer 422, the support side frame 111 of the adjacent mesh rack, the support side frame 111 at the another side of the mesh panel 1 that is not provided with the sleeves 2, and the hook connecting plate 411, and is threadedly connected to the first cap 423.

[0060] To achieve more stable splicing between the expansion mesh 100 and the adjacent mesh rack, optionally, referring to FIG. 3, in the present embodiment, two hook connectors 41 and two thread locking assemblies 42 are arranged at intervals along a length direction of the support side frame 111, so that the support side frame 111 at the side is spliced and fixed with the support side frame 111 of the adjacent mesh rack. Certainly, in other embodiments, the number of the hook connectors 41 and the thread locking assemblies 42 is not limited to two, and can be arranged at intervals along the length direction of the support side frame 111 when the number is greater than or equal to two.

[0061] When a length of the mesh panel 1 is long, to avoid the mesh panel 1 from being bent due to excessive weight of clothes, which causes the expansion mesh 100 to be unstable, optionally, referring to FIG. 8, in the present embodiment, the expansion mesh 100 further includes an intermediate sleeve 3. The intermediate sleeve 3 is arranged in a middle of the support side frame 111 at the one side that is provided with the sleeves 2 and is configured to be sleeved and fixed with a support rod 210 that is in the middle. This is equivalent to adding a support point, which distributes the pressure on the mesh panel 1 and prevents the mesh panel 1 from being bent due to excessive weight of clothes. Certainly, in other embodiments, multiple expansion meshes 100 may be spliced in sequence to obtain a desired length, but the present disclosure is not limited herein.

[0062] Optionally, referring to FIG. 3, in the present embodiment, the support side 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 and in a triangular wavy line shape. Specifically, the top rod 112 and the bottom rod 113 can be made of steel or alloy. The curved rod can be made of steel or alloy wire, which is welded between the top rod 112 and the bottom rod 113 by bending. In this way, the support strength of the mesh panel 1 can be improved. The bearing mesh surface 12 is composed of a plurality of metal wires welded on the support side frame 111 in a criss-cross mode. The sleeve 2 is a conical sleeve with an upper aperture smaller than a lower aperture. Therefore, the sleeve 2 can be conveniently sleeved and fixed on a fixed sleeve 2 (not shown) provided with a tapered outer peripheral surface corresponding to the support rod 210.

[0063] Referring to FIGS. 1 and 5, another aspect of the embodiment of the present disclosure provides a wardrobe frame 1000, which includes a basic mesh rack 200 provided with sleeves 2 at four corners and the expansion mesh 100 described above. The expansion mesh 100 is spliced and fixed with the support side frame 111 at one side of the basic mesh rack 200 through the splicing and fixing assembly. The expansion mesh 100 and the sleeves 2 of the basic mesh rack 200 are correspondingly sleeved and fixed at a top and a bottom of the support rod 210. It can be understood that the structure of the basic mesh rack 200 is basically the same as that of the expansion mesh 100, except that the four corners of the mesh panel 1 of the basic mesh rack 200 are correspondingly provided with the sleeves. Since the wardrobe frame 1000 has all the structures and connections of the expansion mesh 100, the wardrobe frame 1000 has all the advantages of the expansion mesh 100, and details will not be reiterated herein.Embodiment 2

[0064] The present embodiment is basically the same as Embodiment 1, and the differences only include the specific structure of the splicing and fixing assembly and the connection method with the support side frame 111 at the another side of the mesh panel 1 that is not provided with the sleeves 2.

[0065] Optionally, referring to FIGS. 5-9, in the present embodiment, the splicing and fixing assembly includes two C-shaped buckling members 51, two pressing plates 52, and two thread fixing assemblies 53.

[0066] The C-shaped buckling member 51 and the pressure plate 52 are configured to wrap and dock the support side frame 111 with the support side frame 111 of the adjacent mesh rack, and are locked and fixed by the thread fixing assembly 53. That is, the support side frame 111 at the another side of the expansion mesh 100 that is not provided with the sleeves 2 and the support side frame 111 of the adjacent mesh rack are close to each other by the C-shaped buckling member 51 and the pressing plate 52, are limited in a space limited by the C-shaped buckling member 51 and the pressing plate 52, and are locked and fixed by the thread fixing assembly 53.

[0067] Specifically, the thread fixing assembly 53 includes a second large head screw 531 and a second cap 532. The second large head screw 531 sequentially passes through the pressing plate 52, the support side frame 111 of the adjacent mesh rack, the support side frame 111 at the another side of the mesh panel 1 that is not provided with the sleeves 2, and the C-shaped buckling member 51, and is threadedly connected to the second cap 532. Therefore, the expansion mesh 100 and the adjacent mesh rack may be spliced quickly and stably.

[0068] Optionally, referring to FIG. 8, in the present embodiment, the plurality of C-shaped buckling members 51, the plurality of pressing plates 52 and the plurality of thread fixing assemblies 53 are arranged at intervals along the length direction of the support side frame 111, so that the support side frame 111 at the side is spliced and fixed with the support side frame 111 of the adjacent mesh rack. In this way, the splicing between the expansion mesh 100 and the adjacent mesh rack becomes more stable.Embodiment 3

[0069] The present embodiment is basically the same as Embodiment 1, the only difference lying in the specific structure of the splicing and fixing assembly. Optionally, referring to FIGS. 10-15, in the present embodiment, the splicing and fixing assembly includes: a U-shaped hanging buckle member 61, an L-shaped pressing member 62, and a threaded locking member.

[0070] The U-shaped hanging buckle member 61 is arranged inverted within the inner side of the support side frame 111 on the another side of the mesh panel 1 that is not provided with the sleeves 2, and is configured to be hooked onto the support side frame 111 of the adjacent mesh rack. That is, an opening of the U-shaped hanging buckle faces downwards, and is detachably or fixedly arranged on the support side frame 111 on the another side of the mesh panel 1 that is not provided with the sleeves 2. During splicing, the U-shaped hanging buckle member 61 is directly hooked onto the support side frame 111 of the adjacent mesh rack to achieve quick hooking and pre-fixing with the support side frame 111 of the adjacent mesh rack. The L-shaped pressing member 62 is arranged opposite to the U-shaped hanging buckle member 61, and together they enclose to form a tubular clamping structure for accommodating two support side frames 111 that are adjacent to each other; that is, the L-shaped pressing member 62 is disposed on the inner side and a lower side of the support side frame 111 of the adjacent mesh rack, and confines the two support side frames 111 that are adjacent to each other within the tubular clamping structure. The threaded locking member sequentially passes through the L-shaped pressing member 62 and the two support side frames 111, and is threadedly connected to the U-shaped hanging buckle member 61. It can be understood that the L-shaped pressing member 62 has a through hole o4 for the threaded locking member to pass through, and the threaded locking member passes through the through hole o4 and the two support side frames 111 to be threadedly fixed to the U-shaped hanging buckle member 61.

[0071] When it is necessary to increase the size of the mesh rack, the support side frame 111 on the another side of the mesh panel 1 of the expansion mesh 100 that is not provided with the sleeves 2 is spliced and fixed to the support side frame 111 on the one side of the adjacent mesh rack that is provided with the sleeves 2 via the splicing and fixing assembly, and the corresponding supporting vertical rod is sleeved at the position of the sleeve 2. It can be understood that the adjacent mesh rack can be the basic mesh rack 200 having the sleeves 2 at all four corners, or another expansion mesh 100, but the present disclosure is not limited herein.

[0072] The expansion mesh 100 achieves quick hooking and pre-fixing with the support side frame 111 of the adjacent mesh rack during splicing by invertedly disposing the U-shaped hanging buckle member 61 on an inside of the another side of the support side frame 111 that is not provided with the sleeves 2; then the L-shaped pressing member 62, arranged opposite thereto, limits this side support side frame 111 and the support side frame 111 of the adjacent mesh rack within the tubular clamping structure, and fixes them with the threaded locking member, making the adjacent support side frames 111 stable and reliable. This structure has the advantages of simplicity, quick assembly, and reliable locking, effectively improving splicing efficiency and use stability.

[0073] Optionally, referring to FIGS. 14 and 15, in the present embodiment, the U-shaped hanging buckle member 61 includes a first vertical plate 611, a second vertical plate 613, and a first horizontal plate 612. The first horizontal plate 612 connects the first vertical plate 611 and the second vertical plate 613. The first vertical plate 611 is fixed to the inner side of the support side frame 111. Optionally, the U-shaped hanging buckle member 61 is integrally bent and formed. The first vertical plate 611 can be fixed to the inner side of the support side frame 111 by welding. A middle of the second vertical plate 613 is provided with a clearance notch o2, which is used for fitting a vertical plate of the L-shaped pressing member 62. The first vertical plate 611 is provided with a threaded hole o1 corresponding to the clearance notch o2 for being threadedly connected to the threaded locking member.

[0074] Optionally, referring to FIG. 14, in the present embodiment, a height of the first vertical plate 611 is greater than a height of the second vertical plate 613. The first vertical plate 611 is configured with a longer length to facilitate welding assembly with the support side frame 111, thereby maintaining horizontal and vertical positioning. The shorter second vertical plate 613 is configured with a shorter length to meet locking requirements and reduces the risk of deformation caused by opening too many vertical notches o3 during the production process.

[0075] In order to achieve quick alignment of the mesh panel 1 with the adjacent mesh rack, optionally, referring to FIGS. 5 and 6, in the present embodiment, the first vertical plate 611 and the second vertical plate 613 are each provided with a plurality of vertical notches o3 spaced apart in a length direction thereof for avoiding the metal wires of the bearing mesh surface 12. Specifically, in the present embodiment, the vertical notches o3 are correspondingly arranged on two sides of the installation position of the threaded locking member. In this way, during splicing, the mesh panel 1 can be quickly aligned with the adjacent mesh rack simply by aligning the vertical notches o3 with the metal wires of the bearing mesh surface 12.

[0076] Optionally, referring to FIG. 14, in the present embodiment, the threaded locking member is a threaded rod 63. The expansion mesh 100 further includes a nut 64 threadedly connected to an outer end of the threaded rod 63, which is used to cover an exposed part of the threaded rod 63 and improve the safety and appearance quality of the product.

[0077] Optionally, referring to FIG. 1, in the present embodiment, two splicing and fixing assemblies are spaced apart along the length direction of the support side frame 111 to enhance splicing stability. Certainly, in other embodiments, three, four, or more splicing and fixing assemblies can be also provided, which needs to be adaptively set according to the specific size of the length of the support side frame 111, but the present disclosure is not limited herein.

[0078] The foregoing embodiments are merely intended for describing the technical solutions of the present disclosure other than limiting the present disclosure. Although the present disclosure is described in detail with reference to the foregoing embodiments, persons of ordinary skill in the art should understand that they may still make modifications to the technical solutions described in the foregoing embodiments or make equivalent replacements to some or all technical features thereof, without departing from the scope of the technical solutions of embodiments of the present disclosure.

Examples

embodiment 1

[0052]Referring to FIGS. 1-9, an embodiment of the present disclosure provides an expansion mesh 100, which includes a mesh panel 1, sleeves 2, and a splicing and fixing assembly.

[0053]The mesh panel 1 includes a frame 11 and a bearing mesh surface 12. The frame 11 is square and is surrounded by four support side frames 111. The bearing mesh surface 12 is arranged on the frame 11, and is configured to support and store clothes, or hang hangers after the wardrobe frame 1000 is formed.

[0054]The sleeves 2 are correspondingly arranged at two corners at one side of the mesh panel 1 and configured to be sleeved and fixed on a support rod 210. That is, the sleeves 2 are correspondingly arranged at corner regions where a shorter support side frame 111 at the one side is correspondingly connected to two longer support side frames 111. Specifically, the sleeves 2 are correspondingly arranged at the two corners at the one side of the mesh panel 1 by welding.

[0055]The splicing and fixing assemb...

embodiment 2

[0064]The present embodiment is basically the same as Embodiment 1, and the differences only include the specific structure of the splicing and fixing assembly and the connection method with the support side frame 111 at the another side of the mesh panel 1 that is not provided with the sleeves 2.

[0065]Optionally, referring to FIGS. 5-9, in the present embodiment, the splicing and fixing assembly includes two C-shaped buckling members 51, two pressing plates 52, and two thread fixing assemblies 53.

[0066]The C-shaped buckling member 51 and the pressure plate 52 are configured to wrap and dock the support side frame 111 with the support side frame 111 of the adjacent mesh rack, and are locked and fixed by the thread fixing assembly 53. That is, the support side frame 111 at the another side of the expansion mesh 100 that is not provided with the sleeves 2 and the support side frame 111 of the adjacent mesh rack are close to each other by the C-shaped buckling member 51 and the pressin...

embodiment 3

[0069]The present embodiment is basically the same as Embodiment 1, the only difference lying in the specific structure of the splicing and fixing assembly. Optionally, referring to FIGS. 10-15, in the present embodiment, the splicing and fixing assembly includes: a U-shaped hanging buckle member 61, an L-shaped pressing member 62, and a threaded locking member.

[0070]The U-shaped hanging buckle member 61 is arranged inverted within the inner side of the support side frame 111 on the another side of the mesh panel 1 that is not provided with the sleeves 2, and is configured to be hooked onto the support side frame 111 of the adjacent mesh rack. That is, an opening of the U-shaped hanging buckle faces downwards, and is detachably or fixedly arranged on the support side frame 111 on the another side of the mesh panel 1 that is not provided with the sleeves 2. During splicing, the U-shaped hanging buckle member 61 is directly hooked onto the support side frame 111 of the adjacent mesh r...

Claims

1. An expansion mesh, comprising:a mesh panel including a frame that is surrounded by four support side frames and is in a square shape, and a bearing mesh surface arranged on the frame;sleeves correspondingly arranged at two corners at one side of the mesh panel and configured to be sleeved and fixed on a support rod; anda splicing and fixing assembly arranged on a support side frame at another side of the mesh panel that is not provided with the sleeves, and configured to splice and fix the support side frame at the another side of the mesh panel to a support side frame at one side of an adjacent mesh rack that is provided with the sleeves.

2. The expansion mesh according to claim 1, wherein the splicing and fixing assembly includes a plurality of hook connectors and a plurality of thread locking assemblies with a corresponding number of the plurality of hook connectors;the hook connector is fixedly disposed on an inner side of the support side frame, and a hook-shaped head of the hook connector is arranged towards an outer side of the support side frame; andthe thread locking assembly passes through the support side frame of the adjacent mesh rack and is threadedly connected to the hook connector.

3. The expansion mesh according to claim 2, wherein the hook connector includes a hook connecting plate and the hook-shaped head;the hook connecting plate is weldedly fixed on the inner side of the support side frame, and passes through a top of the support side frame and is bent outward to form the hook-shaped head;the thread locking assembly includes a first large head screw, a washer and a first cap; andthe first large head screw sequentially passes through the washer, the support side frame of the adjacent mesh rack, the support side frame at the another side of the mesh panel that is not provided with the sleeves, and the hook connecting plate, and is threadedly connected to the first cap.

4. The expansion mesh according to claim 2, wherein the plurality of hook connectors and the plurality of thread locking assemblies with the corresponding number of the plurality of hook connectors are arranged at intervals along a length direction of the support side frame, so that the support side frame at the side is spliced and fixed with the support side frame of the adjacent mesh rack.

5. The expansion mesh according to claim 1, wherein the splicing and fixing assembly includes a plurality of C-shaped buckling members, a plurality of pressing plates with a corresponding number of the plurality of C-shaped buckling members, and a plurality of thread fixing assemblies with the corresponding number of the plurality of C-shaped buckling members; andthe C-shaped buckling member and the pressing plate are configured to wrap and dock the support side frame at the another side of the mesh panel that is not provided with the sleeves with the support side frame of the adjacent mesh rack, and are locked and fixed by the thread fixing assembly.

6. The expansion mesh according to claim 5, wherein the thread fixing assembly includes a second large head screw and a second cap; andthe second large head screw sequentially passes through the pressing plate, the support side frame of the adjacent mesh rack, the support side frame at the another side of the mesh panel that is not provided with the sleeves, and the C-shaped buckling member, and is threadedly connected to the second cap.

7. The expansion mesh according to claim 5, wherein the plurality of C-shaped buckling members, the plurality of pressing plates and the plurality of thread fixing assemblies are arranged at intervals along a length direction of the support side frame, so that the support side frame at the side is spliced and fixed with the support side frame of the adjacent mesh rack.

8. The expansion mesh according to claim 1, wherein the splicing and fixing assembly includes a U-shaped hanging buckle member, an L-shaped pressing member, and a threaded locking member;wherein the U-shaped hanging buckle member is arranged inverted within an inner side of the support side frame at the another side of the mesh panel that is not provided with the sleeves, and is hooked onto the support side frame of the adjacent mesh rack;the L-shaped pressing member is arranged opposite to the U-shaped hanging buckle member, and the L-shaped pressing member and the U-shaped hanging buckle member enclose to form a tubular clamping structure for accommodating two support side frames that are adjacent to each other; andthe threaded locking member sequentially passes through the L-shaped pressing member and the two support side frames that are adjacent to each other, and is threadedly connected to the U-shaped hanging buckle member.

9. The expansion mesh according to claim 8, wherein the U-shaped hanging buckle member includes a first vertical plate, a second vertical plate, and a first horizontal plate connecting the first vertical plate and the second vertical plate; andwherein the first vertical plate is fixed to the inner side of the support side frame, a middle of the second vertical plate is provided with a clearance notch for fitting a vertical plate of the L-shaped pressing member, and the first vertical plate is provided with a threaded hole corresponding to the clearance notch for being threadedly connected to the threaded locking member.

10. The expansion mesh according to claim 9, wherein a height of the first vertical plate is greater than a height of the second vertical plate.

11. The expansion mesh according to claim 9, wherein the first vertical plate and the second vertical plate are each provided with a plurality of vertical notches spaced apart in a length direction thereof for avoiding metal wires of the bearing mesh surface.

12. The expansion mesh according to claim 8, wherein the threaded locking member is a threaded rod, and further includes a nut threadedly connected to an outer end of the threaded rod; multiple splicing and fixing assemblies are spaced apart along a length direction of the support side frame.

13. The expansion mesh according to claim 1, further comprising an intermediate sleeve; wherein the intermediate sleeve is arranged in a middle of the support side frame at the one side that is provided with the sleeves and is configured to be sleeved and fixed with a middle support rod.

14. The expansion mesh according to claim 1, wherein the support side frame includes a top rod, a bottom rod, and a connecting curved rod arranged between the top rod and the bottom rod and in a triangular wavy line shape; the bearing mesh surface is composed of a plurality of metal wires welded on the support side frame in a criss-cross mode; and the sleeve is a conical sleeve with an upper aperture smaller than a lower aperture.

15. A wardrobe frame, comprising: a plurality of supporting vertical rods, a basic mesh rack provided with sleeves at four corners and the expansion mesh as claimed in claim 1; wherein the expansion mesh is spliced and fixed with a support side frame at one side of the basic mesh rack by the splicing and fixing assembly; and the basic mesh rack and the sleeves of the expansion mesh are sleeved and fixed at corresponding top and bottom positions of the plurality of supporting vertical rods.