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3D printed graded resilience structure and shoe sole using 3D printed graded resilience structure

A 3D printing and elastic technology, applied in the field of sports shoes, can solve problems such as collapse, weakened cushioning effect, and weakened rebound performance

Pending Publication Date: 2020-02-21
NANJING AMEBA ENG STRUCTURE OPTIMIZATION RES INST CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, this kind of material cushioning sole, which relies on the elasticity of soft materials to achieve cushioning, is prone to problems such as collapse and deformation due to the passage of time, so that the cushioning effect gradually weakens; on the other hand, the stronger the cushioning performance of the sole, the better the rebound performance It will be weakened accordingly. In racing sports and other occasions that require soles to have high resilience, ordinary cushioning soles cannot be both "slow" and "bounce".

Method used

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  • 3D printed graded resilience structure and shoe sole using 3D printed graded resilience structure
  • 3D printed graded resilience structure and shoe sole using 3D printed graded resilience structure
  • 3D printed graded resilience structure and shoe sole using 3D printed graded resilience structure

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Embodiment Construction

[0028] The specific implementation manners of the present invention will be further described in detail below in conjunction with the accompanying drawings.

[0029] Such as Figure 1-4 As shown, a 3D printed hierarchical springback structure is composed of surface grid 1, multiple 3D printed hierarchical springback lattice units, ring edge 2, bottom grid 3, and diagonal struts 4, and the hierarchical springback The shape of the structure can be designed into three-dimensional shapes such as cylinders and cubes.

[0030] The hierarchical rebound lattice unit is composed of a cushioning component and a cushioning rebound part.

[0031] The cushioning component is composed of 3 vertical rods 5, 3 diagonal stay rods 6, and 12 diagonal strut rods 4 to form a plane force structure: the distribution points of the 3 vertical rods 5 are triangular, and the diameter of the vertical rods 5 ranges from 1.5 to 5 mm. The height ranges from 5 to 18mm, and the distance between the vertical...

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Abstract

The invention discloses a 3D printed graded resilience structure and a shoe sole using the 3D printed graded resilience structure. The 3D printed graded resilience structure comprises surface meshes,a plurality of 3D printed graded resilience crystal lattice units, loop edges, bottom meshes and inclined support rods, wherein each graded resilience crystal lattice unit consists of a cushioning component and a cushioning resilience part; each cushioning component forms a plane stress structure by n vertical rods, n inclined pull rods and 4n inclined support rods (n is greater than or equal to 3); and each cushioning resilience part is of a single elastic vertical post structure. Based on the foot sole pressure distribution, a 3D printed secondary rebounding structure is applied to the shoesole; through twice cushioning, impact energy generated through sports doing can be sufficiently absorbed; in addition, strong resilience force can be provided; sportsmen of different sports events and different sports features are supported to complete skills; the sportsmen are protected from sports injury; and in addition, the graded resilience structure also has the functions of comfortable andbreathable performance, customization, light weight and the like.

Description

technical field [0001] The invention belongs to the technical field of sports shoes, and in particular relates to a 3D printed hierarchical rebound structure and a shoe sole using the structure. Background technique [0002] With the expansion and popularization of national sports and fitness, people's requirements for the quality and style update speed of sports shoes are also constantly improving. The production of traditional sports shoes belongs to a technology-intensive industrial chain, involving a variety of processes, and the process technology is complex, which directly leads to a long R&D and production cycle. Even for large sports shoe manufacturers, it takes 18 months to design and produce a pair of sports shoes. [0003] When people are in sports, the impact force on the soles of the feet at the moment of contact with the ground is several times that of the human body's own gravity, and the soles of the feet bear greater pressure on the feet, causing a series of...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A43B13/18
CPCA43B13/181A43B13/187
Inventor 沈炜姚远丁颖
Owner NANJING AMEBA ENG STRUCTURE OPTIMIZATION RES INST CO LTD
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