Wire hanger

By using the stabilizing and limiting mechanisms of the wire rack, the weight of the hook drives the bearing plate to slide, pushing the components and the return spring in conjunction with the limiting block and sliding sleeve. This solves the problem of the hook easily detaching, achieves the stability and position adjustment of the hook, enhances the strength of the wire rack, and prevents goods from falling.

CN117652817BActive Publication Date: 2026-07-21厦门欣泰货架有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
厦门欣泰货架有限公司
Filing Date
2023-11-29
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

The connection between the hook and the crossbar relies solely on the weight of the item, which makes the hook prone to wobbling and may detach from the crossbar, causing the item to fall.

Method used

The system uses a wire bracket, with a stabilizing mechanism and a limiting mechanism to restrict the hook. The weight of the hook causes the bearing plate to slide, which in turn pushes the component and the return spring to work with the limiting block and the sliding sleeve to ensure that the hook is securely attached to the wire bracket.

Benefits of technology

Reduce the possibility of hooks falling off the wire frame, keep the hooks stable, facilitate position adjustment, increase the strength of the wire frame, and prevent goods from falling.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN117652817B_ABST
    Figure CN117652817B_ABST
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Abstract

The application discloses a wire hanging frame and relates to the field of commodity display.The wire hanging frame comprises a support frame one, the one side of the support frame one is provided with a support frame two, the one side of the support frame two is provided with a support frame three, the support frame one is fixed with a plurality of wire racks one which are uniformly distributed, support rods are arranged between two support seats, the support rods are provided with a plurality of wire racks two which are uniformly distributed, the wire racks two are provided with stabilizing mechanisms, and the stabilizing mechanisms are provided with limiting mechanisms.The article is hung on the wire racks one and the wire racks two by using hooks, when the hooks are hung on the wire racks two, the hooks are directly hung on the stabilizing mechanisms, the stabilizing mechanisms limit the hooks, when the hooks are not hung on the stabilizing mechanisms, the limiting mechanisms limit the stabilizing mechanisms, so that the hooks can be prevented from falling off the wire racks two and the article can be prevented from falling off, and meanwhile, the limiting mechanisms limit the stabilizing mechanisms, so that the stabilizing mechanisms can be kept stable when the hooks are hung on the stabilizing mechanisms.
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Description

Technical Field

[0001] This application relates to the field of product display, and in particular to wire racks. Background Technology

[0002] Shopping malls are offline shopping venues with a wide variety of goods. To make it easier for shoppers to purchase, the goods are usually displayed in an orderly manner so that shoppers can browse and select them. Some stable items are placed directly on the shelves, while items that cannot be placed on the shelves are usually hung up using hooks.

[0003] A rack that can hold hooks is called a hanging rack. Generally, hanging racks are supported by a base and placed on the ground or table. Several horizontal bars extend from the hanging rack. After the goods are fixed to the hooks, they are directly hung on the horizontal bars extending from the hanging rack.

[0004] When using hooks to hang goods on the horizontal bar extending from the rack, the connection between the hook and the horizontal bar relies solely on the weight of the item to cause the hook to press against the horizontal bar. When the item is shaken by the shopper, the hook and the horizontal bar may separate, and then the hook and the item will fall off the rack. Summary of the Invention

[0005] The purpose of this application is to address the problem in the prior art where the connection between the hook and the crossbar relies solely on the weight of the item to cause the hook to contact the crossbar. This can lead to the hook separating from the crossbar when the item is shaken by the shopper, causing the hook and item to fall off the rack. This application provides a wire rack.

[0006] To achieve the above objectives, this application specifically adopts the following technical solution:

[0007] A wire hanger includes a support frame 1, with support legs 1 fixed at both ends of the support frame 1 and fasteners fixed on the support legs 1. A support frame 2 is provided on one side of the support frame 1, with support legs 2 fixed at both ends of the support frame 2. A support frame 3 is provided on one side of the support frame 2, with support legs 3 fixed at both ends of the support frame 3. Support seats are provided at both ends of the support frame 1. Support legs 1, 2, and 3 are all fixedly connected to the support seats. Several evenly distributed wire frames 1 are fixed on the support frame 1. A support rod is provided between two support seats. Both ends of the support rod are fixedly connected to the support seats. Several evenly distributed wire frames 2 are provided on the support rod. The end of the wire frame 2 away from the support rod is fixedly connected to the support frame 2. A stabilizing mechanism is provided on the wire frame 2, and a limit mechanism is provided on the stabilizing mechanism.

[0008] By adopting the above technical solution, hooks are fixed to all items that need to be hung. These hooks are then used to hang the items on wire frame one and wire frame two. When a hook is on wire frame two, it is directly attached to a stabilizing mechanism, which restricts the hook, ensuring it is securely attached to wire frame two. When the hook is not attached to the stabilizing mechanism, a limiting mechanism restricts the stabilizing mechanism, fixing it to wire frame two. This allows for different shapes and positions of wire frames one and two, enabling the hanging of more diverse items. The hooks are restricted when attached to wire frame two, reducing the possibility of them detaching and the items falling. Simultaneously, the limiting mechanism restricts the stabilizing mechanism, maintaining its stability when the hook is attached, making it easier to hang the hook. The hooks can also be moved on wire frame two, facilitating adjustments to the hanging item's position.

[0009] Furthermore, the stabilizing mechanism includes two support blocks symmetrically arranged on the second wire frame. A sliding component is provided between the two support blocks and the second wire frame. A bearing plate is slidably connected to each of the two support blocks, and a bearing plate is slidably connected between the two support blocks. A return spring is fixed on the bearing plate, and the return spring is located between the sliding component and the bearing plate. A pushing component is provided on each of the two support blocks, and the pushing component corresponds to the limiting block.

[0010] By adopting the above technical solution, the hook is positioned on the bearing plate between the two support plates. The item on the hook is affected by its own weight, causing the hook to press down. The hook squeezes the bearing plate, and the bearing plate squeezes the return spring. At the same time, the bearing plate uses the pushing component to drive the limiting block on the support block to slide, so that the limiting blocks on the two support blocks move closer to each other. Finally, the two limiting blocks abut against each other. The two limiting blocks and the bearing plate restrict the hook, thereby reducing the swaying of the hook when it is on the second iron frame, reducing the possibility of the hook and the item being separated from the second iron frame, and making the hook more stable when it is on the second iron frame.

[0011] Furthermore, the pushing component includes a pushing inclined block slidably connected to the support block, one end of the limiting block has an inclined surface, the inclined surface of the limiting block abuts against the inclined surface of the pushing inclined block and is slidably connected, and both ends of the bearing plate are fixed with connecting blocks, the connecting blocks being fixedly connected to the pushing inclined block.

[0012] By adopting the above technical solution, the bearing plate drives the connecting block to slide on the support block, the connecting block drives the pushing inclined block, the pushing inclined block presses down on the limiting block, the limiting block is affected by the inclined surface on the pushing inclined block, the limiting block slides off the support block, the limiting block extends out of the support block to limit the hook on the bearing plate, so that when the hook presses down on the bearing plate, the bearing plate can limit the hook in a timely manner.

[0013] Furthermore, a limiting block is fixed on the inclined surface of the limiting block, and a limiting groove is formed on the pushing inclined block. The limiting groove corresponds to the limiting block, and the limiting block slides within the limiting groove.

[0014] By adopting the above technical solution, the limiting block on the limiting block slides in the limiting groove on the pushing inclined block, thereby improving the stability between the pushing inclined block and the limiting block.

[0015] Furthermore, the sliding assembly includes a sliding sleeve fitted on the second wire frame, with two symmetrical sliding blocks fixed inside the sliding sleeve. The second wire frame has sliding grooves corresponding to the sliding blocks. The sliding sleeve slides on the second wire frame using the sliding blocks. The two support blocks are fixedly connected to the sliding sleeve. The end of the return spring away from the bearing plate is fixedly connected to the sliding sleeve.

[0016] By adopting the above technical solution, the sliding sleeve can slide on the second wire frame. The sliding block and the sliding groove restrict the sliding sleeve, so that when the hook is hung on the bearing plate, the position of the hook on the second wire frame can be easily moved.

[0017] Furthermore, the limiting mechanism includes a connecting rod 1 disposed on the pushing inclined block. One end of the connecting rod 1 is rotatably connected to the pushing inclined block. The end of the connecting rod 1 away from the pushing inclined block is rotatably and slidably connected to a connecting rod 2. Rotating blocks are rotatably connected to both sides of the middle part of the connecting rod 1. The rotating blocks are fixedly connected to the support block. A limiting plate is fixed on the support block. The connecting rod 2 passes through the limiting plate and is slidably connected to the limiting plate. A downward pressing tooth is fixed at the end of the connecting rod 2 away from the connecting rod 1. The wire frame 2 has evenly distributed tooth grooves, and the downward pressing tooth corresponds to the tooth groove.

[0018] By adopting the above technical solution, when there is no hook on the bearing plate, the end of the connecting rod one that is close to the pushing block is raised, and then the connecting rod two is pressed down. The pressing teeth on the connecting rod two are stuck in the tooth groove of the wire frame two, so that the sliding sleeve cannot slide. This reduces the movement of the bearing plate before the hook is hung on the bearing plate, making it easier to hang the hook on the bearing plate.

[0019] Furthermore, several vertically symmetrical reinforcing plates are fixed on the second support frame. The first reinforcing plates are fixedly connected to the second support frame. A second reinforcing plate is fixed between adjacent first reinforcing plates. A reinforcing groove is provided on the second reinforcing plate, and the reinforcing groove corresponds to the second wire frame.

[0020] By adopting the above technical solution, the reinforcement plate one and reinforcement plate two support the wire frame two, thereby further improving the strength of the wire frame two and making it easier for the wire frame two to bear heavy objects.

[0021] Furthermore, a guardrail is fixed on the support rod, and the end of the wire frame two away from the support frame two is fixedly connected to the guardrail.

[0022] By adopting the above technical solution, when an item falls from the hook, the guardrail can catch the falling item, thereby reducing the possibility of the item falling.

[0023] In summary, this application includes at least one of the following beneficial effects;

[0024] 1. In this application, when the hook is hung on the wire frame two, and there is no hook on the support plate, the end of the connecting rod one near the pushing inclined block is raised, and then the connecting rod two is pressed down. The pressing teeth on the connecting rod two are engaged in the tooth groove of the wire frame two, preventing the sliding sleeve from sliding, thus facilitating the hanging of the hook. When the hook is located on the support plate between the two support plates, the item on the hook is affected by its own weight, causing the hook to press down. The hook presses against the support plate, and the support plate presses against the return spring. At the same time, the support plate causes the connecting block to slide on the support block. The connecting block drives the pushing inclined block, and the pushing inclined block presses down on the limiting block. The limiting block is affected by the inclined surface on the pushing inclined block, causing the limiting block to slide off the support block. The limiting block extends out of the support block. The block restricts the hooks on the support plate. At the same time, the pusher block drives the connecting rod one. The end of the connecting rod one near the pusher block is pressed down. Then, with the support of the rotating block, the other end of the connecting rod one is raised. The connecting rod one drives the connecting rod two. The connecting rod two is raised under the restriction of the limiting plate. Then, the connecting rod two drives the pressing teeth to disengage from the teeth groove on the wire frame two. This achieves the purpose of restricting the hooks when they are hung on the wire frame two, reducing the possibility of the hooks falling off the wire frame two and causing the items to fall. At the same time, it keeps the support plate stable when the hooks are hung on the support plate, making it more convenient to hang the hooks upwards. It also allows the hooks to move on the wire frame two, making it convenient to adjust the position of the hung items.

[0025] 2. In this application, when the pressing tooth moves away from the tooth groove, the sliding sleeve can slide on the second wire frame. At the same time, the sliding sleeve drives the sliding block to slide in the sliding groove on the second wire frame. The sliding block, the sliding groove and the sliding sleeve restrict the sliding sleeve from rotating, thereby achieving the purpose of making it convenient to move the position of the hook on the second wire frame when it is hung on the support plate.

[0026] 3. In this application, by fixing two reinforcing plates 1 to the upper and lower sides of the support frame 2 respectively, and then fixing the reinforcing plate 2 between the two reinforcing plates 1, the adjacent wire frame 2 passes through the reinforcing plate 2, and the reinforcing plate 2 supports the wire frame 2, thereby achieving the purpose of further improving the strength of the wire frame 2 and making it easier for the wire frame 2 to bear heavy objects. Attached Figure Description

[0027] Figure 1 This is a first three-dimensional structural schematic diagram of the wire hanger in this application;

[0028] Figure 2 This application Figure 1 Enlarged view of point A in the middle;

[0029] Figure 3 This is a three-dimensional structural diagram of the stabilizing mechanism in this application;

[0030] Figure 4 This is a cross-sectional view of the stabilizing mechanism in this application;

[0031] Figure 5 This application Figure 4 Enlarged diagram of point B in the middle.

[0032] Explanation of reference numerals in the attached figures:

[0033] 1. Support frame one; 2. Support frame two; 3. Support frame three; 4. Support rod; 5. Wire frame one; 6. Wire frame two; 7. Stabilizing mechanism; 71. Support block; 72. Bearing plate; 73. Limiting block; 74. Pushing assembly; 741. Pushing inclined block; 742. Connecting block; 743. Limiting block; 744. Limiting groove; 75. Sliding assembly; 751. Sliding sleeve; 752. Sliding block; 753. Sliding groove; 76. Return spring; 8. Limiting mechanism; 81. Connecting rod one; 82. Connecting rod two; 83. Rotating block; 84. Downward pressing tooth; 85. Tooth groove; 86. Limiting plate; 9. Support leg one; 10. Support leg two; 11. Support leg three; 12. Support base; 13. Buckle; 14. Reinforcing plate one; 15. Reinforcing plate two; 16. Guardrail. Detailed Implementation

[0034] The following is in conjunction with the appendix Figure 1 —5 provides further details regarding this application.

[0035] This application discloses a wire hanger.

[0036] Reference Figure 1 , Figure 2 and Figure 3The wire hanger includes a support frame 1, with support legs 9 fixed at both ends of the support frame 1, and buckles 13 fixed on the support legs 9. A support frame 2 is provided on one side of the support frame 1, with support legs 10 fixed at both ends of the support frame 2. A support frame 3 is provided on one side of the support frame 2, with support legs 11 fixed at both ends of the support frame 3. Support seats 12 are provided at both ends of the support frame 1. Support legs 9, 10, and 11 are all fixedly connected to the support seats 12. Several evenly distributed wire frames 5 are fixed on the support frame 1. A support rod 4 is provided between two support seats 12. Both ends of the support rod 4 are fixedly connected to the support seats 12. Several evenly distributed wire frames 6 are provided on the support rod 4. The end of the wire frame 6 away from the support rod 4 is fixedly connected to the support frame 2. A stabilizing mechanism 7 is provided on the wire frame 6, and a limit mechanism 8 is provided on the stabilizing mechanism 7.

[0037] When using this wire rack, first, secure it to the desired wall using the clips 13 fixed on support leg 9. Support leg 9 supports support frame 1 and support base 12. Support frame 1 supports wire rack 5. Support frame 2 on support base 12 supports wire rack 6. At the same time, support frame 3 and support leg 3 further support support base 12 and support frame 11. Then, attach hooks to the items to be hung, and use the hooks to hang the items on the wire rack. When the hook is attached to wire frame 26, it is directly attached to stabilizing mechanism 7. Stabilizing mechanism 7 restricts the hook, ensuring it is stably attached to wire frame 26. When the hook is not attached to stabilizing mechanism 7, limiting mechanism 8 restricts stabilizing mechanism 7, fixing it to wire frame 26. When the hook is fully attached to stabilizing mechanism 7, the hook presses against stabilizing mechanism 7, causing stabilizing mechanism 7 to activate limiting mechanism 8, which then releases its restraint on wire frame 26. The restraints of mechanism 6 and stabilizing mechanism 7 allow the hook to move on wire frame 6 after being attached to stabilizing mechanism 7. By using the hook on wire frame 5 and wire frame 6, the stabilizing mechanism 7 restricts the hook when it is attached to wire frame 6. When the hook is not attached to stabilizing mechanism 7, the limiting mechanism 8 restricts stabilizing mechanism 7. Once the hook is fully attached to stabilizing mechanism 7, the limiting mechanism 8 releases its restriction, allowing stabilizing mechanism 7 to slide on wire frame 6. This allows for different shapes and positions of wire frames 5 and 6, enabling the hanging of more diverse items. The restraints on the hook when it is attached to wire frame 6 reduce the possibility of the hook detaching from wire frame 6 and the item falling. Simultaneously, the limiting mechanism 8 restricts stabilizing mechanism 7, maintaining its stability when the hook is attached, making it easier to hang the hook. It also allows the hook to move on wire frame 6, facilitating adjustments to the position of the hung item.

[0038] Reference Figure 2 , Figure 3 and Figure 4 The stabilizing mechanism 7 includes two support blocks 71 symmetrically arranged on the second iron wire frame 6. A sliding component 75 is provided between the two support blocks 71 and the second iron frame. A bearing plate 72 is slidably connected to each of the two support blocks 71. A bearing plate 72 is slidably connected between the two support blocks 71. A return spring 76 is fixed on the bearing plate 72. The return spring 76 is located between the sliding component 75 and the bearing plate 72. A pushing component 74 is provided on each of the two support blocks 71. The pushing component 74 corresponds to the limiting block 73.

[0039] When the hook is hung on the wire rack 6, it rests on the support plate 72 between the two support plates. The weight of the item on the hook causes it to press down, squeezing the support plate 72. The support plate 72 then compresses the return spring 76. Simultaneously, the support plate 72, through the pushing component 74, causes the limiting blocks 73 on the support blocks 71 to slide, bringing the limiting blocks 73 closer together. Finally, the two limiting blocks 73 and the support plate 72 restrain the hook, reducing the amount of weight the hook should be on the support plate 72. The swaying of the hook reduces the swaying of the hook, while the limiting mechanism 8 releases the restriction on the sliding component 75, allowing the sliding component 75 to drive the two support blocks 71 to move. The hook between the two support blocks 71 moves with the item. When the hook is hung on the support plate 72, the support plate 72 moves downward, driving the pushing component 74. The pushing component 74 causes the limiting block 73 to slide out and restrict the hook. This reduces the swaying of the hook when it is on the second iron frame, reduces the possibility of the hook and the item separating from the second iron frame 6, and makes the hook more stable when it is on the second iron frame 6.

[0040] Reference Figure 4 and Figure 5 The pushing component 74 includes a pushing inclined block 741 slidably connected to the support block 71. One end of the limiting block 73 has an inclined surface. The inclined surface of the limiting block 73 abuts against the inclined surface of the pushing inclined block 741 and is slidably connected. Both ends of the bearing plate 72 are fixed with connecting blocks 742, and the connecting blocks 742 are fixedly connected to the pushing inclined block 741.

[0041] When the hook presses down on the support plate 72, as the support plate 72 moves, it causes the connecting block 742 to slide on the support block 71. The connecting block 742 then drives the pusher block 741, which in turn presses down on the limiting block 73. The limiting block 73, influenced by the inclined surface of the pusher block 741, slides off the support block 71. The limiting block 73 extends out of the support block 71 to restrict the hook on the support plate 72. When it is necessary to remove the hook from the support plate 72, the hook is slowly lifted, and then the return spring... Under the action of 76, the bearing plate 72 drives the connecting block 742, the connecting block 742 drives the pushing inclined block 741, the pushing inclined block 741 drives the bearing plate 72 to retract the support block 71, and then the hook is removed from the bearing plate 72. By allowing the bearing plate 72 to drive the connecting block 742 when the hook is pressed down on the bearing plate 72, the connecting block 742 drives the corresponding pushing inclined block 741, the pushing inclined block 741 drives the limiting block 73, so that the bearing plate 72 can restrict the hook in a timely manner when the hook is pressed down on the bearing plate 72.

[0042] Reference Figure 4 and Figure 5A limiting block 743 is fixed on the inclined surface of the limiting block 73, and a limiting groove 744 is formed on the pushing inclined block 741. The limiting groove 744 corresponds to the limiting block 743, and the limiting block 743 slides within the limiting groove 744. When the pushing inclined block 741 slides between the limiting block 73 and the limiting block 741, the limiting block 743 on the limiting block 73 slides within the limiting groove 744 on the pushing inclined block 741. By allowing the limiting block 743 on the limiting block 73 to slide within the limiting groove 744 on the pushing inclined block 741, the stability between the pushing inclined block 741 and the limiting block 73 can be improved.

[0043] Reference Figure 2 , Figure 3 and Figure 4 The sliding assembly 75 includes a sliding sleeve 751 sleeved on the second wire frame 6. Two symmetrical sliding blocks 752 are fixed inside the sliding sleeve 751. The second wire frame 6 has a sliding groove 753 corresponding to the sliding blocks 752. The sliding sleeve 751 slides on the second wire frame 6 using the sliding blocks 752. Two support blocks 71 are fixedly connected to the sliding sleeve 751. The end of the return spring 76 away from the bearing plate 72 is fixedly connected to the sliding sleeve 751.

[0044] When the limiting mechanism 8 releases the restriction on the second wire frame 6, the sliding sleeve 751 can slide on the second wire frame 6. At the same time, the sliding sleeve 751 drives the sliding block 752 to slide in the sliding groove 753 on the second wire frame 6. The sliding block 752, the sliding groove 753 and the sliding sleeve 751 restrict the sliding sleeve 751 from rotating. By letting the sliding sleeve 751 drive the two support blocks 71 to slide on the second wire frame 6, it is convenient to move the position of the hook on the second wire frame 6 when it is hung on the bearing plate 72.

[0045] Reference Figure 2 , Figure 3 and Figure 4 The limiting mechanism 8 includes a connecting rod 81 mounted on the pushing inclined block 741. One end of the connecting rod 81 is rotatably connected to the pushing inclined block 741. The end of the connecting rod 81 away from the pushing inclined block 741 is rotatably and slidably connected to a connecting rod 82. Rotating blocks 83 are rotatably connected to both sides of the middle part of the connecting rod 81. The rotating blocks 83 are fixedly connected to the support block 71. A limiting plate 86 is fixed on the support block 71. The connecting rod 82 passes through the limiting plate 86 and is slidably connected to the limiting plate 86. A downward pressing tooth 84 is fixed at the end of the connecting rod 82 away from the connecting rod 81. The wire frame 6 has evenly distributed tooth grooves 85, and the downward pressing tooth 84 corresponds to the tooth grooves 85.

[0046] When the hook presses down on the bearing plate 72, the bearing plate 72 drives the connecting block 742, which in turn drives the pushing inclined block 741. The pushing inclined block 741 drives the connecting rod 81. The end of the connecting rod 81 near the pushing inclined block 741 is pressed down, and then, supported by the rotating block 83, the other end of the connecting rod 81 is raised. The connecting rod 81 drives the connecting rod 82, which rises under the restriction of the limiting plate 86. Then, the connecting rod 82 drives the pressing tooth 84 to disengage from the tooth groove 85 on the wire frame 6, and then slides. The sleeve 751 can move on the wire frame 6. When there is no hook on the bearing plate 72, the end of the connecting rod 81 near the pushing block 741 is raised, and then the connecting rod 82 is pressed down. The pressing tooth 84 on the connecting rod 82 is locked in the tooth groove 85 of the wire frame 6, making the sliding sleeve 751 unable to slide. This allows the bearing plate 72 to drive the connecting rod 82 to move, thereby reducing the movement of the bearing plate 72 before the hook is attached, making it easier to attach the hook to the bearing plate 72.

[0047] Reference Figure 1 Several symmetrically arranged reinforcing plates 14 are fixed to the support frame 2. The reinforcing plates 14 are fixedly connected to the support frame 2. A reinforcing plate 15 is fixed between adjacent reinforcing plates 14. The reinforcing plate 15 has a reinforcing groove, which corresponds to the wire frame 6. Two reinforcing plates 14 are fixed to the upper and lower sides of the support frame 2, respectively. Then, a reinforcing plate 15 is fixed between the two reinforcing plates 14, allowing the adjacent wire frame 6 to pass through the reinforcing plate 15. The reinforcing plate 15 supports the wire frame 6. By supporting the wire frame 6 with the reinforcing plates 14 and 15, the strength of the wire frame 6 can be further improved, making it easier for the wire frame 6 to bear heavy objects.

[0048] Reference Figure 1 A guardrail 16 is fixed to the support rod 4, and the end of the wire frame 2 6 away from the support frame 2 is fixedly connected to the guardrail 16. The guardrail 16 is fixed to the support rod 4, positioned below the wire frame 2 6. When an item falls from the hook, the guardrail 16 can catch it, reducing the possibility of it falling.

[0049] Working principle: When the wire rack is needed, firstly, it is fixed to the wall by the buckle 13 on the support leg 9. The support leg 9 supports the support frame 1 and the support base 12. The support frame 1 supports the wire rack 5. The support frame 2 on the support base 12 supports the wire rack 6. At the same time, the support frame 3 and the support leg 3 further support the support base 12 and the support frame 1. Then, hooks are fixed on the items to be hung. Then, the items are hung on the wire rack 5 and the wire rack 2 6 using the hooks.

[0050] When the hook is hung on the wire frame 6, the hook is positioned on the support plate 72 between the two support plates. The item on the hook is affected by its own weight, causing the hook to press down. The hook presses against the support plate 72, and the support plate 72 presses against the return spring 76. At the same time, the support plate 72 causes the connecting block 742 to slide on the support block 71. The connecting block 742 drives the pusher block 741, which in turn pushes down the limiting block 73. The limiting block 73 is affected by the inclined surface on the pusher block 741, causing it to slide off the support block 71. The limiting block 73 extends out of the support block 71 to restrict the hook on the support plate 72.

[0051] When the inclined block 741 is pushed down to press down the limiting block 73, the inclined block 741 drives the connecting rod 81. The end of the connecting rod 81 close to the inclined block 741 is pressed down. Then, with the support of the rotating block 83, the other end of the connecting rod 81 is raised. The connecting rod 81 drives the connecting rod 82. The connecting rod 82 is raised under the restriction of the limiting plate 86. Then, the connecting rod 82 drives the pressing tooth 84 to disengage from the tooth groove 85 on the wire frame 6. Then, the sliding sleeve 751 can move on the wire frame 6, making it convenient for items to move on the wire frame 6. When there is no hook on the bearing plate 72, the end of the connecting rod 81 close to the inclined block 741 is raised. Then, the connecting rod 82 is pressed down. The pressing tooth 84 on the connecting rod 82 is stuck in the tooth groove 85 of the wire frame 6, making it impossible for the sliding sleeve 751 to slide, making it convenient to hang the hook.

Claims

1. A wire hanger, comprising a support frame (1), characterized in that: Support legs 1 (9) are fixed at both ends of support frame 1 (1), and buckles (13) are fixed on support legs 1 (9). Support frame 2 (2) is provided on one side of support frame 1 (1), and support legs 2 (10) are fixed at both ends of support frame 2 (2). Support frame 3 (3) is provided on one side of support frame 2 (2), and support legs 3 (11) are fixed at both ends of support frame 3 (3). Support seats (12) are provided at both ends of support frame 1 (1). Support legs 1 (9), 2 (10), and 3 (11) are all connected to the support. The support base (12) is fixedly connected. Several evenly distributed wire frames (5) are fixed on the support frame (1). A support rod (4) is set between the two support bases (12). The two ends of the support rod (4) are fixedly connected to the support base (12). Several evenly distributed wire frames (6) are set on the support rod (4). The end of the wire frame (6) away from the support rod (4) is fixedly connected to the support frame (2). A stabilizing mechanism (7) is set on the wire frame (6). A limit mechanism (8) is set on the stabilizing mechanism (7). The stabilizing mechanism (7) includes two support blocks (71) symmetrically arranged on the second iron wire frame (6). A sliding component (75) is provided between the two support blocks (71) and the second iron frame. A bearing plate (72) is slidably connected to each of the two support blocks (71). A bearing plate (72) is slidably connected between the two support blocks (71). A return spring (76) is fixed on the bearing plate (72). The return spring (76) is located between the sliding component (75) and the bearing plate (72). A pushing component (74) is provided on each of the two support blocks (71). The pushing component (74) corresponds to the limiting block (73). The pushing component (74) includes a pushing inclined block (741) slidably connected to the support block (71), and a limiting block (73) with an inclined surface at one end. The inclined surface of the limiting block (73) abuts against the inclined surface of the pushing inclined block (741) and is slidably connected. Both ends of the bearing plate (72) are fixed with connecting blocks (742), and the connecting blocks (742) are fixedly connected to the pushing inclined block (741). The sliding assembly (75) includes a sliding sleeve (751) sleeved on the second wire frame (6). Two symmetrical sliding blocks (752) are fixed inside the sliding sleeve (751). The second wire frame (6) is provided with a sliding groove (753) corresponding to the sliding blocks (752). The sliding sleeve (751) slides on the second wire frame (6) using the sliding blocks (752). Two support blocks (71) are fixedly connected to the sliding sleeve (751). The end of the return spring (76) away from the bearing plate (72) is fixedly connected to the sliding sleeve (751). The limiting mechanism (8) includes a connecting rod 1 (81) set on the pushing inclined block (741). One end of the connecting rod 1 (81) is rotatably connected to the pushing inclined block (741). The end of the connecting rod 1 (81) away from the pushing inclined block (741) is rotatably and slidably connected to a connecting rod 2 (82). Rotating blocks (83) are rotatably connected to both sides of the middle part of the connecting rod 1 (81). The rotating blocks (83) are fixedly connected to the support block (71). A limiting plate (86) is fixed on the support block (71). The connecting rod 2 (82) passes through the limiting plate (86) and is slidably connected to the limiting plate (86). A downward pressing tooth (84) is fixed at the end of the connecting rod 2 (82) away from the connecting rod 1 (81). The wire frame 2 (6) is provided with evenly distributed tooth grooves (85). The downward pressing tooth (84) corresponds to the tooth groove (85).

2. The wire hanger according to claim 1, characterized in that: A limiting block (743) is fixed on the inclined surface of the limiting block (73), and a limiting groove (744) is opened on the pushing inclined block (741). The limiting groove (744) corresponds to the limiting block (743), and the limiting block (743) slides in the limiting groove (744).

3. The wire hanger according to claim 1, characterized in that: Several vertically symmetrical reinforcing plates (14) are fixed on the second support frame (2). The first reinforcing plate (14) is fixedly connected to the second support frame (2). A second reinforcing plate (15) is fixed between adjacent first reinforcing plates (14). A reinforcing groove is provided on the second reinforcing plate (15), and the reinforcing groove corresponds to the second wire frame (6).

4. The wire hanger according to claim 1, characterized in that: A guardrail (16) is fixed on the support rod (4), and the end of the wire frame (6) away from the support frame (2) is fixedly connected to the guardrail (16).