Shoes and shoe cushions with magnetic levitation elastic structure

TWM686106UActive Publication Date: 2026-08-01DAH LIH PUH
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Patent Information

Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
DAH LIH PUH
Filing Date
2026-05-15
Publication Date
2026-08-01

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Abstract

A shoe with a magnetic levitation elastic structure has a sole comprising a sole component. The sole component has a magnetic levitation elastic structure comprising a top layer, a bottom layer, a plurality of first magnets, and a plurality of second magnets. The top layer and the bottom layer are connected to form a cavity. The first magnets are dispersedly disposed on the top layer, and the second magnets are dispersedly disposed on the bottom layer. The positions of the plurality of second magnets correspond to the positions of the plurality of first magnets, and the magnetic poles of the corresponding first and second magnets are the same. This allows the sole to possess cushioning and shock absorption capabilities.
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Claims

1. A shoe with a magnetic levitation elastic structure, having a sole, the sole comprising: a sole component having the magnetic levitation elastic structure, the magnetic levitation elastic structure comprising a top layer, a bottom layer, a plurality of first magnets and a plurality of second magnets, the top layer and the bottom layer being connected to form a cavity, the plurality of first magnets being dispersedly disposed on the top layer, the plurality of second magnets being dispersedly disposed on the bottom layer, the positions of the plurality of second magnets respectively corresponding to the positions of the plurality of first magnets, and the magnetic poles of the corresponding first magnets and second magnets being the same.

2. The shoe with a magnetic levitation elastic structure according to claim 1, wherein the plurality of first magnets are fixed in the plurality of grooves in the top layer and the plurality of second magnets are fixed in the plurality of grooves in the bottom layer.

3. The shoe with a magnetic levitation elastic structure according to claim 1, wherein the first magnets are embedded in the top layer and the second magnets are embedded in the bottom layer.

4. The shoe with a magnetic levitation elastic structure according to claim 1, wherein the magnetic force, static spacing, or combination thereof of each pair of corresponding first and second magnets depends on the position of the support points provided by the pair of first and second magnets on the foot.

5. The shoe with a magnetic levitation elastic structure according to claim 1, wherein the sole comprises an outsole and an insole connected to the outsole, and the magnetic levitation elastic structure is located in the insole.

6. A shoe air cushion with a magnetic levitation elastic structure, comprising: an air bladder including an upper bladder portion and a lower bladder portion connected to the upper bladder portion, wherein the upper bladder portion and the lower bladder portion are filled with gas; a plurality of first magnets disposed separately in the upper bladder portion; and a plurality of second magnets disposed separately in the lower bladder portion, wherein the positions of the second magnets respectively correspond to the positions of the first magnets, and the magnetic poles of the corresponding first magnets and second magnets are the same.

7. The shoe air cushion with a magnetic levitation elastic structure according to claim 6, wherein the first magnets are fixed in a plurality of grooves in the upper bladder portion and the second magnets are fixed in a plurality of grooves in the lower bladder portion.

8. The shoe air cushion with a magnetic levitation elastic structure according to claim 6, wherein the first magnets are embedded in the upper bladder portion and the second magnets are embedded in the lower bladder portion.

9. The shoe air cushion with a magnetic levitation elastic structure according to claim 6, wherein the magnetic force, static spacing, or combination thereof of each pair of corresponding first and second magnets depends on the position of the support points provided by the pair of first and second magnets on the foot.

10. A shoe with a magnetic levitation elastic structure, having a shoe air cushion as described in any one of claims 6 to 9.

11. A shoe with a magnetic levitation elastic structure, comprising a sole comprising: a sole component; an air cushion disposed within the sole component, comprising an upper air cushion portion and a lower air cushion portion connected to the upper air cushion portion, wherein the upper air cushion portion and the lower air cushion portion are filled with gas; a plurality of first magnets disposed separately within the sole component and connected to the outer surface of the upper air cushion portion; and a plurality of second magnets disposed separately within the sole component and connected to the outer surface of the lower air cushion portion, wherein the positions of the second magnets correspond to the positions of the first magnets, and the magnetic poles of the corresponding first magnets and second magnets are the same.

12. The shoe with a magnetic levitation elastic structure according to claim 11, wherein the magnetic force, static spacing, or combination thereof of each pair of corresponding first and second magnets depends on the position of the support points provided by the pair of first and second magnets on the foot.