Portable supporting type supporting cushioning shoe sole

By setting cushioning holes and cushioning support on the sole body, the problem that the existing sole cushioning cavity is difficult to balance and support is solved, and the support and cushioning effect is optimized, which extends the service life and reduces weight.

CN223169247UActive Publication Date: 2025-08-01QUANZHOU DANYI SHOE MATERIAL CO LTD
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Patent Information

Application Number
CN202422777689.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-08-01
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

The existing sole cushioning cavity is difficult to balance cushioning and support, and the cushioning effect becomes worse after long-term use, affecting the use effect.

Method used

A lightweight support-cushioned sole is designed, and a first cushioning hole and a cushioning support are provided on the sole body. The cushioning support body includes a hollow cylinder, which is connected to the sole through a connecting body, and optimizes the cushioning performance with the second and third cushioning holes.

Benefits of technology

The balance of support and cushioning effects is achieved, extending the service life of the sole, while reducing the weight of the sole and reducing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of shoes, in particular to a light supporting type supporting cushioning sole which comprises a sole body and a cushioning supporting body, a plurality of first cushioning holes penetrating left and right are formed in the bottom of the sole body, the first cushioning holes are arranged in the length direction of the sole body, the cushioning supporting body is arranged in at least one first cushioning hole, and the cushioning supporting body is arranged on the sole body. The cushioning supporting body comprises a hollow column body, the hollow column body is coaxially arranged in the first cushioning hole, the top and the bottom of the hollow column body are each provided with a connecting body, and the connecting bodies are connected with the inner wall of the first cushioning hole. The damping support has the beneficial effects that the damping support body reduces the deformation quantity when the first damping hole is stressed, meanwhile, the damping support body can deform, has certain buffering performance and plays a role in supporting and buffering at the same time; the first lightening holes and the second lightening holes can reduce the weight of the sole, so that the sole is lighter, raw materials are reduced, and the cost is saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of shoes, in particular to a lightweight support type shock-absorbing sole with support function. Background Art

[0002] When people walk or run, they are subject to a large impact force feedback from the ground. Over time, this will cause damage to the knees and feet. In order to relieve this impact force, shock absorption is often considered in the design of the sole. However, it is difficult to balance shock absorption and support. In order to improve the shock absorption effect, a deformable shock-absorbing cavity is provided in the sole. The existing shock-absorbing cavity of the sole lacks sufficient support. After long-term use, the deformation of the shock-absorbing cavity is difficult to recover, the shock absorption effect becomes poor, affecting normal use, and there is room for improvement. Content of the Utility Model

[0003] To overcome the technical defects existing in the prior art, the utility model provides a lightweight support type shock-absorbing sole with support function, which is lightweight in structure and has good support and shock absorption effects.

[0004] The technical solution adopted by the utility model is: a lightweight support type shock-absorbing sole with support function, including a sole body and a shock-absorbing support body. A plurality of first shock-absorbing holes penetrating left and right are provided at the bottom of the sole body. The first shock-absorbing holes are arranged along the length direction of the sole body. The shock-absorbing support body is arranged in at least one first shock-absorbing hole. The shock-absorbing support body includes a hollow column. The hollow column is coaxially arranged in the first shock-absorbing hole. Connecting bodies are provided at the top and bottom of the hollow column. The connecting bodies are connected to the inner wall of the first shock-absorbing hole.

[0005] Further, the cross-section of the first shock-absorbing hole is an elliptical structure.

[0006] Further, the first shock-absorbing holes on the sole body gradually become smaller from back to front.

[0007] Further, anti-slip grooves recessed upward are provided between adjacent first shock-absorbing holes.

[0008] Further, vertical first weight-reducing holes are provided at the bottom of the first shock-absorbing holes.

[0009] Further, second weight-reducing holes are provided on the shock-absorbing support body. The second weight-reducing holes are vertically arranged axially and penetrate through the hollow column and the connecting body.

[0010] Further, second shock-absorbing holes penetrating left and right are provided on the sole body. The second shock-absorbing holes correspond to the arch positions of the feet. The height of the second shock-absorbing holes is higher than that of the first shock-absorbing holes.

[0011] Further, third shock-absorbing holes penetrating left and right are provided on the sole body. The third shock-absorbing holes are located at the rear end of the sole body.

[0012] Furthermore, the shock-absorbing support body is integrally formed in the first shock-absorbing hole corresponding to the sole body and the heel of the foot.

[0013] Furthermore, a shock-absorbing support body is provided in each of the first shock-absorbing holes.

[0014] To sum up, the beneficial effects of the present invention are as follows: the first cushioning hole can cushion the impact force received by the sole, and a cushioning support body is arranged in the first cushioning hole. The cushioning support body reduces the deformation of the first cushioning hole when it is subjected to force. At the same time, the cushioning support body itself can be deformed and has a certain cushioning performance, while playing a supporting and cushioning role. The cushioning support body and the first cushioning hole act at the same time, and the cushioning effect is good. At the same time, the service life of the first cushioning hole is extended; the first weight-reducing hole and the second weight-reducing hole can reduce the weight of the sole, making the sole lighter, while reducing raw materials and saving costs; the second cushioning hole and the third cushioning hole are arranged, respectively distributed at the arch and heel, so that the cushioning performance of the arch and heel of the sole body is better and more in line with usage habits. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a structural schematic diagram of a lightweight support-type support and shock-absorbing sole of the utility model.

[0016] Figure 2 The utility model is a schematic diagram of the bottom surface structure of a lightweight support type support and shock-absorbing sole.

[0017] Figure 3 This is a schematic structural diagram of a shock-absorbing support body of a lightweight support-type shock-absorbing sole of the utility model.

[0018] Figure 4 It is a side view of a shock-absorbing support body of a lightweight support-type shock-absorbing sole of the utility model.

[0019] Figure 5 This is a structural diagram of Example 2.

[0020] Description of reference numerals:

[0021] 1. Sole body; 2. Shock-absorbing support body; 21. Hollow cylinder; 22. Connector; 3. First shock-absorbing hole; 4. Anti-slip groove; 5. First weight-reducing hole; 6. Second weight-reducing hole; 7. Second shock-absorbing hole; 8. Third shock-absorbing hole. DETAILED DESCRIPTION

[0022] The present invention will be further described below with reference to the accompanying drawings:

[0023] It should be noted that the “front” and “rear” mentioned in the present invention refer to the directions in which the length of the sole extends, and the “left” and “right” mentioned in the present invention refer to the directions in which the width of the sole extends. Example 1

[0024] As Figures 1-4 shown, this embodiment provides a lightweight support type shock-absorbing sole, which includes a sole body 1 and a shock-absorbing support body 2.

[0025] In this embodiment, the sole body 1 and the shock-absorbing support body 2 are separately made of PU, TPU, TPR, EVA, or PVC. In some other embodiments, the sole body 1 and the shock-absorbing support body 2 can be made of a mixture of materials such as PU and TPU, PU and TPR, TPR, PU and EVA, or PU and PVC.

[0026] In this embodiment, a number of first shock-absorbing holes 3 penetrating from left to right are provided at the bottom of the sole body 1. The cross-section of the first shock-absorbing hole 3 is an elliptical structure. The first shock-absorbing holes 3 are arranged along the length direction of the sole body 1. The first shock-absorbing holes 3 on the sole body 1 gradually become smaller from back to front. A vertical first weight-reducing hole 5 is provided at the bottom of the first shock-absorbing hole 3. An anti-slip groove 4 recessed upward is provided between adjacent first shock-absorbing holes 3, which improves the anti-slip performance of the sole body 1. There are four first shock-absorbing holes 3 in this embodiment, and the four first shock-absorbing holes gradually become smaller from back to front. The elliptical first shock-absorbing hole 3 can deform, thereby buffering the impact force received by the sole. The first weight-reducing hole 5 can reduce the weight of the sole, making the sole lighter, and at the same time reducing the raw materials and saving costs.

[0027] In this embodiment, the shock-absorbing support body 2 is integrally formed in the first shock-absorbing hole 3 corresponding to the heel of the sole body 1 and the foot. The shock-absorbing support body 2 includes a hollow column 21. The cross-section of the hollow column 21 is elliptical. The hollow column 21 is coaxially arranged in the first shock-absorbing hole 3. Connection bodies 22 are provided at the top and bottom of the hollow column 21, and the connection bodies 22 are connected to the inner wall of the first shock-absorbing hole 3. A second weight-reducing hole 6 is provided on the shock-absorbing support body 2. The second weight-reducing hole 6 is axially vertical and penetrates through the hollow column 21 and the connection body 22. When the sole body 1 is stressed, the hollow column 21 can deform under stress to provide buffering for the first shock-absorbing hole 3. The connection body 22 can further play a supporting role. The shock-absorbing support body 2 reduces the deformation amount of the first shock-absorbing hole 3 when stressed, provides support for the first shock-absorbing hole 3, and improves the shock-absorbing performance of the sole body 1 at the same time. The second weight-reducing hole 6 can reduce the weight of the sole, making the sole lighter, and at the same time reducing the raw materials and saving costs.

[0028] In this embodiment, the sole body 1 is provided with a second shock absorption hole 7 penetrating from left to right. The second shock absorption hole 7 corresponds to the arch position of the foot, and the height of the second shock absorption hole 7 is higher than that of the first shock absorption hole 3. The sole body 1 is provided with a third shock absorption hole 8 penetrating from left to right, and the third shock absorption hole 8 is located at the rear end of the sole body 1. By providing the second shock absorption hole 7 and the third shock absorption hole 8, which are respectively distributed at the arch and the heel, the shock absorption performance of the arch and the heel of the sole body 1 is better, which is more in line with the usage habits. Embodiment 2

[0029] As Figure 5 shown, this embodiment provides a lightweight support type shock absorption sole. Different from Embodiment 1, a shock absorption support body 2 is provided in each of the first shock absorption holes 3. Specifically, the shock absorption support body 2 is integrally formed in the first shock absorption hole 3. The shock absorption support body 2 increases the support of the first shock absorption hole 3 and increases the strength of the sole body 1, making it applicable to people with a larger body weight.

[0030] Working principle: When the sole body 1 is stressed, the first shock absorption hole 3 deforms, thereby buffering the impact force received by the sole. The deformation of the first shock absorption hole 3 squeezes the shock absorption support body 2, and the shock absorption support body 2 reduces the deformation amount when the first shock absorption hole 3 is stressed. At the same time, the shock absorption support body 2 itself can deform and has a certain shock absorption performance, playing a role of both support and shock absorption, and extending the service life of the first shock absorption hole 3; the first weight reduction hole 5 and the second weight reduction hole 6 can reduce the weight of the sole, making the sole lighter, and at the same time reducing the raw materials and saving costs; by providing the second shock absorption hole 7 and the third shock absorption hole 8, which are respectively distributed at the arch and the heel, multiple shock absorptions are provided for the arch and the heel, making the shock absorption performance of the sole body 1 better and more in line with the usage habits.

[0031] The above embodiments show and describe the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present utility model. Without departing from the spirit and scope of the present invention, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. A lightweight support type shock-absorbing sole, characterized in that, It includes a sole body and a shock-absorbing support body. A plurality of first shock-absorbing holes penetrating left and right are provided at the bottom of the sole body. The first shock-absorbing holes are arranged along the length direction of the sole body. The shock-absorbing support body is arranged in at least one first shock-absorbing hole. The shock-absorbing support body includes a hollow column. The hollow column is coaxially arranged in the first shock-absorbing hole. Connection bodies are provided at the top and bottom of the hollow column, and the connection bodies are connected to the inner wall of the first shock-absorbing hole.

2. The lightweight support type shock-absorbing sole according to claim 1, characterized in that, The cross-section of the first shock-absorbing hole is an elliptical structure.

3. A lightweight support type shock-absorbing sole according to claim 1, characterized in that, The first shock-absorbing holes on the sole body gradually become smaller from back to front.

4. The lightweight support type shock-absorbing sole according to claim 1, wherein Anti-slip grooves sunken upward are provided between adjacent first shock-absorbing holes.

5. The lightweight support type shock-absorbing sole according to claim 1, characterized in that, Vertical first weight-reducing holes are provided at the bottom of the first shock-absorbing holes.

6. The lightweight support type shock-absorbing sole according to claim 1, characterized in that, Second weight-reducing holes are provided on the shock-absorbing support body. The second weight-reducing holes are vertically arranged axially and penetrate through the hollow column and the connection body.

7. The lightweight support type shock-absorbing sole according to claim 1, characterized in that, Second shock-absorbing holes penetrating left and right are provided on the sole body. The second shock-absorbing holes correspond to the arch position of the foot. The height of the second shock-absorbing holes is higher than that of the first shock-absorbing holes.

8. A lightweight support type shock-absorbing sole according to claim 1, characterized in that, Third shock-absorbing holes penetrating left and right are provided on the sole body. The third shock-absorbing holes are located at the rear end of the sole body.

9. The lightweight support type shock-absorbing sole according to claim 1, characterized in that, The shock-absorbing support body is integrally formed in the first shock-absorbing hole corresponding to the heel of the sole body and the foot.

10. The lightweight support type shock-absorbing sole according to claim 1, characterized in that, A shock-absorbing support body is provided in each first shock-absorbing hole.