Abrasion-resistant ABS material shoe heels

By using multiple heel plates spliced ​​together and a wear-resistant ABS base plate design, the problem of existing heels being unable to be replaced after wear is solved, improving the wear resistance and cushioning effect of the heels, and enhancing comfort.

CN224504812UActive Publication Date: 2026-07-17WENZHOU HENGWEI SHOE MATERIAL CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WENZHOU HENGWEI SHOE MATERIAL CO LTD
Filing Date
2025-07-14
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing heels have poor cushioning and shock absorption, and cannot be replaced after wear, resulting in insufficient wear resistance.

Method used

The design features multiple heel plates spliced ​​together, using a wear-resistant base plate made of ABS material. The heel plates are detachably connected through cushioning pads and snap-fit ​​connectors, allowing for interchangeable heel plates after wear to improve wear resistance. The cushioning pads and snap-fit ​​anti-detachment grooves enhance the cushioning and shock absorption effect.

Benefits of technology

This improves the wear resistance and cushioning effect of the heel, thus increasing its lifespan and comfort.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224504812U_ABST
    Figure CN224504812U_ABST
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Abstract

This utility model discloses a wear-resistant ABS material heel, belonging to the field of heel technology. It includes a heel body, which is composed of a sole connecting plate, multiple heel plates, and cushioning pads. The surfaces of the heel plates and sole connecting plate are detachably connected with snap-fit ​​components. One end of each snap-fit ​​component is snapped into the surface of the cushioning pad. This wear-resistant ABS material heel, with its heel body constructed from multiple heel plates, not only allows for the creation of heels of different heights but also enables the interchangeability of heel plates from other locations after wear, improving the heel's wear resistance. Furthermore, the inclusion of several cushioning pads, along with their snap-fit ​​design and anti-detachment grooves, facilitates rapid assembly of the heel plates and enhances the heel's cushioning and shock absorption, thus improving comfort.
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Description

Technical Field

[0001] This utility model relates to the field of shoe heel technology, and more specifically, to abrasion-resistant ABS material shoe heels. Background Technology

[0002] The heel is an important component of a shoe. It is located at the back of the sole and its main function is to support the heel and provide stability when walking.

[0003] Currently, most shoe heels are of a fixed size. After prolonged walking, the bottom of the heel is prone to wear and tear, and its cushioning and shock absorption effect is poor. For example, a cushioning and shock-absorbing shoe heel disclosed in publication number CN202262507U consists of an elastic column at the bottom and a cavity on the elastic column. The cavity contains a spring wrapped in elastic plastic. The upper end of the spring is in contact with the sole at the top of the cavity, and the lower end of the spring is in contact with the elastic column.

[0004] As can be seen from the above-mentioned publicly available solutions, the cushioning and shock absorption effect of a single elastic column is not good, and the elastic column cannot be replaced after the bottom is worn, which reduces the wear resistance of the heel. Utility Model Content

[0005] To address the problems existing in the prior art, the purpose of this utility model is to provide a wear-resistant ABS material heel. This wear-resistant ABS material heel is made of multiple heel plates spliced ​​together, which can not only be spliced ​​to form heels of different heights, but also allow the bottom heel plate to be interchanged with heel plates in other positions after wear, thus improving the wear resistance of the heel. Furthermore, the inclusion of several cushioning pads and the locking and anti-slip grooves on the cushioning pads not only facilitates the quick splicing of the heel plates, but also improves the cushioning and shock absorption effect of the heel, thereby enhancing comfort.

[0006] To solve the above problems, the present invention adopts the following technical solution.

[0007] A wear-resistant ABS material heel includes a heel body, which is composed of a sole connecting plate, multiple heel plates, and cushioning pads. The surfaces of the heel plates and sole connecting plates are detachably connected with snap-fit ​​components. One end of each snap-fit ​​component is snapped into the surface of the cushioning pad. This wear-resistant ABS material heel, with its heel body constructed from multiple heel plates, not only allows for the creation of heels of different heights but also enables the interchangeability of heel plates from other locations after wear, improving the heel's wear resistance. Furthermore, the inclusion of several cushioning pads, along with their snap-fit ​​and anti-detachment grooves, facilitates quick assembly of the heel plates and enhances the heel's cushioning and shock absorption, thus improving comfort.

[0008] Furthermore, the surface of the buffer pad has a first snap-fit, one end of which is fixedly connected to an anti-detachment groove, and the other end of the anti-detachment groove is fixedly connected to a second snap-fit, so that both ends of the buffer pad can be snapped into the anti-detachment groove.

[0009] Furthermore, the snap-fit ​​component includes a snap-fit ​​block, one end of which is fixedly connected to an anti-detachment block, and the other end of which is fixedly connected to a connecting rod. The snap-fit ​​component allows the heel plate and the sole connecting plate to be disassembled and reassembled with the cushioning pad.

[0010] Furthermore, the heel plate includes a wear-resistant substrate made of ABS material. The surface of the wear-resistant substrate is provided with connection holes. The wear-resistant substrate is not only lightweight but also has good wear resistance and can be disassembled and assembled with the snap-fit ​​component.

[0011] Furthermore, the length of the connecting hole is the same as the thickness of the wear-resistant substrate, and the length of the connecting rod is half the length of the connecting hole, so that both ends of the same connecting hole can be connected and fastened to two connecting rods.

[0012] Furthermore, the surface of the anti-detachment block is movably connected to the inner wall of the anti-detachment groove, and the cross-sectional area of ​​the anti-detachment groove is smaller than the cross-sectional area of ​​the anti-detachment block, so that the anti-detachment groove can prevent the anti-detachment block from detaching at will.

[0013] Furthermore, the inner wall of the connecting hole is provided with an internal thread, and the surface of the connecting rod is provided with an external thread that matches the internal thread of the connecting hole.

[0014] Compared with existing technologies, the advantages of this utility model are:

[0015] (1) The heel body of this design is made up of multiple heel plates spliced ​​together. It can not only be spliced ​​into heels of different heights, but also can be interchanged with heel plates in other positions after the bottom heel plate is worn out, thus improving the wear resistance of the heel.

[0016] (2) This solution, through the setting of several cushioning pads and the locking and anti-detachment grooves of the cushioning pads, not only facilitates the quick splicing of the heel plate, but also improves the cushioning and shock absorption effect of the heel and improves the comfort. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the heel plate structure of this utility model;

[0019] Figure 3 This is a cross-sectional view of the buffer pad structure of this utility model;

[0020] Figure 4 for Figure 2 A schematic diagram of the wear-resistant substrate structure;

[0021] Figure 5 for Figure 2 A schematic diagram of the card connector structure.

[0022] Explanation of the labels in the diagram:

[0023] 1. Heel body; 2. Sole connecting plate; 3. Heel plate; 31. Wear-resistant base plate; 32. Connecting hole; 4. Clip; 41. Clip block; 42. Anti-detachment block; 43. Connecting rod; 5. Buffer pad; 51. First latch; 52. Anti-detachment groove; 53. Second latch. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Example 1: Please refer to Figure 1-5 The wear-resistant ABS material heel includes a heel body 1, which is composed of a sole connecting plate 2, multiple heel plates 3, and cushioning pads 5. The cushioning pads 5 are made of compression-resistant silicone and have a cushioning and shock-absorbing function. Multiple cushioning pads 5 greatly increase the overall cushioning and shock-absorbing effect of the heel. The sole connecting plate 2 and the heel plates 3 are made of the same material. The surface of the sole connecting plate 2 is fixedly connected to the sole. The bottom of the sole connecting plate 2 has screw holes for connecting the snap-fit ​​parts 4. Both the bottom heel plates 3 and the surface of the sole connecting plate 2 are detachably connected to the snap-fit ​​parts 4. Component 4 includes a locking block 41, one end of which is fixedly connected to an anti-detachment block 42, and the other end of which is fixedly connected to a connecting rod 43. The locking component 4 allows the heel plate 3 and the sole connecting plate 2 to be disassembled and assembled with the cushioning pad 5. One end of the locking component 4 is locked and fixed to the surface of the cushioning pad 5. The surface of the cushioning pad 5 has a first locking slot 51, one end of which is fixedly connected to an anti-detachment groove 52, and the other end of the anti-detachment groove 52 is fixedly connected to a second locking slot 53. The first locking slot 51 and the second locking slot 53 allow both ends of the cushioning pad 5 to be locked with the anti-detachment groove 52.

[0026] The heel plate 3 includes a wear-resistant substrate 31, which is made of ABS material. The surface of the wear-resistant substrate 31 is provided with a connecting hole 32. The wear-resistant substrate 31 is not only lightweight but also has good wear resistance. It can be disassembled and assembled with the snap-fit ​​part 4. The length of the connecting hole 32 is the same as the thickness of the wear-resistant substrate 31. The length of the connecting rod 43 is half the length of the connecting hole 32, so that both ends of the same connecting hole 32 can be connected and fastened to two connecting rods 43.

[0027] The surface of the anti-detachment block 42 is movably connected to the inner wall of the anti-detachment groove 52. The cross-sectional area of ​​the anti-detachment groove 52 is smaller than that of the anti-detachment block 42. The anti-detachment groove 52 can prevent the anti-detachment block 42 from detaching at will. The inner wall of the connecting hole 32 is provided with an internal thread, and the surface of the connecting rod 43 is provided with an external thread that matches the internal thread of the connecting hole 32.

[0028] When assembling this wear-resistant ABS material heel, the surfaces of the sole connecting plate 2 and the heel plate 3 are first fastened with threaded fasteners 4. Then, the fasteners 4 are fastened with the cushioning pads 5. Different numbers of heel plates 3 and cushioning pads 5 can be connected according to actual needs to assemble heels of different heights. After long-term wear from contact with the ground, the bottom heel plate 3 can be manually removed and interchanged with heel plates 3 at various positions in the middle of the heel, thereby increasing the wear resistance of the bottom of the heel. The heel body 1 is made up of multiple heel plates 3 spliced ​​together, which can not only be spliced ​​into heels of different heights, but also can be interchanged with heel plates 3 at other positions after the bottom heel plate 3 is worn, improving the wear resistance of the heel. Furthermore, the numerous cushioning pads 5 and the locking and anti-detachment grooves 52 on the cushioning pads 5 not only facilitate the quick splicing of the heel plates 3, but also improve the cushioning and shock absorption effect of the heel, thus improving comfort.

[0029] The above description is merely a preferred embodiment of this utility model; however, the protection scope of this utility model is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the technical scope disclosed in this utility model, based on the technical solution and its improved concept, should be included within the protection scope of this utility model.

Claims

1. A wear-resistant ABS material shoe heel, comprising a shoe heel body (1), characterized in that: The heel body (1) is assembled from a sole connecting plate (2), multiple heel plates (3), and a cushioning pad (5). The surfaces of the heel plates (3) and sole connecting plates (2) are detachably connected with snap-fit ​​pieces (4), and one end of the snap-fit ​​piece (4) is snapped and fixed to the surface of the cushioning pad (5).

2. The abrasion-resistant ABS material heel of claim 1, wherein: The surface of the buffer pad (5) has a first slot (51), one end of the first slot (51) is fixedly connected to an anti-detachment groove (52), and the other end of the anti-detachment groove (52) is fixedly connected to a second slot (53).

3. The abrasion-resistant ABS material heel of claim 1, wherein: The snap-fit ​​component (4) includes a snap-fit ​​block (41), one end of which is fixedly connected to an anti-detachment block (42), and the other end of which is fixedly connected to a connecting rod (43).

4. The abrasion-resistant ABS material heel of claim 3, wherein: The heel plate (3) includes a wear-resistant substrate (31), which is made of ABS material and has connection holes (32) on its surface.

5. The abrasion-resistant ABS material heel of claim 4, wherein: The length of the connecting hole (32) is the same as the thickness of the wear-resistant substrate (31), and the length of the connecting rod (43) is half the length of the connecting hole (32).

6. The abrasion-resistant ABS material heel of claim 3, wherein: The surface of the anti-detachment block (42) is movably connected to the inner wall of the anti-detachment groove (52), and the cross-sectional area of ​​the anti-detachment groove (52) is smaller than the cross-sectional area of ​​the anti-detachment block (42).

7. The abrasion-resistant ABS material heel of claim 5, wherein: The inner wall of the connecting hole (32) is provided with an internal thread, and the surface of the connecting rod (43) is provided with an external thread that matches the internal thread of the connecting hole (32).