ANTI-SPRAIN SHOCK-ABSORBING BALANCE AIR-CUSHION SHOE
20190014861 ยท 2019-01-17
Inventors
Cpc classification
A43B13/20
HUMAN NECESSITIES
A43B3/0031
HUMAN NECESSITIES
International classification
Abstract
An anti-sprain shock-absorbing balance air-cushion shoe includes a shoe insert and a sole, it further includes two airbags communicating with each other, two airbag rooms are formed in the upper surface of the sole, used to contain the two airbags respectively, the two airbag rooms are arranged in the sole along the left-and-right direction, which are stretchable and compressible, and the combination of the shoe insert and the sole fixes the two airbags in the two airbag rooms respectively. In the air-cushion shoe, two intercommunicated airbags are mounted in the sole, when an airbag room on one side of the sole steps onto a foreign matter, the airbag room on the side is compressed, and the airbag in the compressed airbag room is also compressed, gas in the compressed airbag flows to the other airbag, which prevents the sole from rolling over and keeps the sole to be in balance.
Claims
1. An anti-sprain shock-absorbing balance air-cushion shoe, comprising a shoe insert and a sole, wherein the air-cushion shoe further comprises two airbags communicating with each other, two airbag rooms are formed in the upper surface of the sole and used to contain the two airbags respectively, the two airbag rooms are distributed in the sole along the left-and-right direction, and the combination of the shoe insert and the sole fixes the two airbags in the two airbag rooms respectively, and the two airbag rooms are stretchable and compressible.
2. The anti-sprain shock-absorbing balance air-cushion shoe of claim 1, wherein the two airbags are communicated through a connecting tube, and the two airbags and the connecting tube which communicates the two airbags constitute a row of shock-absorbing system.
3. The anti-sprain shock-absorbing balance air-cushion shoe of claim 2, wherein there is one row of the shock-absorbing system, which is only arranged at the heel part of the sole.
4. The anti-sprain shock-absorbing balance air-cushion shoe of claim 2, wherein there are multiple rows of the shock-absorbing system, which are only arranged at the heel part of the sole.
5. The anti-sprain shock-absorbing balance air-cushion shoe of claim 2, wherein there are multiple rows of the shock-absorbing system, which are arranged at both the heel part and the forefoot part of the sole.
6. The anti-sprain shock-absorbing balance air-cushion shoe of claim 4, wherein the multiple rows of the shock-absorbing system are sequentially arranged in the sole along the fore-to-aft direction, and both airbags in each row of the shock-absorbing system are arranged in the sole along the left-and-right direction.
7. The anti-sprain shock-absorbing balance air-cushion shoe of claim 4, wherein the multiple rows of the shock-absorbing system are arranged in the sole separately from one another.
8. The anti-sprain shock-absorbing balance air-cushion shoe of claim 3, wherein a thickness of the heel part of the sole is larger than a thickness of the forefoot part.
9. The anti-sprain shock-absorbing balance air-cushion shoe of claim 5, wherein a thickness of the heel part of the sole is the same as a thickness of the forefoot part.
10. The anti-sprain shock-absorbing balance air-cushion shoe of claim 2, wherein a shallow groove is formed in the bottom surface of the shoe insert, and a top of each airbag is separately contained in the shallow groove.
11. The anti-sprain shock-absorbing balance air-cushion shoe of claim 2, wherein a connecting tube groove is formed in the bottom surface of the shoe insert, and the connecting tube groove is used to contain the connecting tube.
12. The anti-sprain shock-absorbing balance air-cushion shoe of claim 2, wherein a connecting tube groove is formed in the upper surface of the sole, and the connecting tube groove is used to contain the connecting tube.
13. The anti-sprain shock-absorbing balance air-cushion shoe of claim 2, wherein a recess is formed in the bottom surface of the sole between the two airbag rooms.
14. The anti-sprain shock-absorbing balance air-cushion shoe of claim 2, wherein a shape of the airbags and the airbag rooms is circular, elliptical, square or irregular.
15. The anti-sprain shock-absorbing balance air-cushion shoe of claim 2, wherein the shoe insert is made of hard materials un-easy to deform, and the sole is made of soft materials easy to deform.
16. The anti-sprain shock-absorbing balance air-cushion shoe of claim 2, wherein the air-cushion shoe further comprises a vamp which connects with the shoe insert.
17. The anti-sprain shock-absorbing balance air-cushion shoe of claim 5, wherein the multiple rows of the shock-absorbing system are sequentially arranged in the sole along the fore-to-aft direction, and both airbags in each row of the shock-absorbing system are arranged in the sole along the left-and-right direction.
18. The anti-sprain shock-absorbing balance air-cushion shoe of claim 5, wherein the multiple rows of the shock-absorbing system are arranged in the sole separately from one another.
19. The anti-sprain shock-absorbing balance air-cushion shoe of claim 4, wherein a thickness of the heel part of the sole is larger than a thickness of the forefoot part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The above objects and advantages of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0040] The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of preferred embodiments of this invention are presented herein for purpose of illustration and description only. It is not intended to be exhaustive or to be limited to the precise form disclosed.
Embodiment 1
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[0042]
[0043] In one embodiment, the two airbags 21 are communicated through a connecting tube 22. The two airbags 21 and the connecting tube 22 which communicates the two airbags 21 together constitute a row of shock-absorbing system 20. In this embodiment, there is only one row of the shock-absorbing system 20 shown in the figures, but it is not intended to be limited.
[0044] In one embodiment, the air-cushion shoe further includes a vamp 13, which connects with the shoe insert 11 by a method of such as adhesion or sewing.
[0045] In one embodiment, as shown in
[0046] In one embodiment, as shown in
[0047] In one embodiment, as shown in
[0048] In one embodiment, the sole 12 and the shoe insert 11 can be prepared by such as an injection process separately. The sole 12 can be prepared simultaneously with the airbag room 121, and the shoe insert 11 can be prepared simultaneously with the shallow groove 111 and the connecting tube groove 112. The airbags 21 of the shock-absorbing system 20 are contained in the airbag rooms 121 of the sole 12 separately, and the connecting tube 22 of the shock-absorbing system 20 is contained in the connecting tube groove 112. In this embodiment, the shock-absorbing system 20 is designed and prepared separate to the sole 12 and the shoe insert 11, therefore the combination and connection of the shoe insert 11 and the sole 12 will not affect the sealing performance of the shock-absorbing system 20. Compared with the airbag rooms 121, there is little chance for leakage to occur on the airbags 21, even leakage occurs on the airbag rooms 121 due to un-tight combination between the shoe insert 11 and the sole 12, the shock-absorbing system 20 will not be affected, therefore the life-span of the air-cushion shoes is prolonged.
[0049] In one embodiment, as shown in
[0050] In one embodiment, the airbags 21 and the airbag rooms 121 are circular, elliptical, square or irregular. The airbags 21 can be rubber or other materials having good elastics.
[0051] In one embodiment, the shoe insert 11 is made of hard material not easy to deform, and the sole 12 is made of soft material easy to deform. Since the sole 12 is soft enough, it can keep the balance of the shoe in slightly uneven grounds. However, when the sole 12 steps onto a larger object, the deformation of the sole 12 becomes larger, which drives the airbag 21 to be compressed. In this way, the rolling over of the sole 12 is restricted, and one avoids spraining his ankles. Meanwhile, the shoe insert 11 is made of hard materials, which can help maintain the horizontal stress to the foot.
Embodiment 2
[0052]
Embodiment 3
[0053]
[0054] Each row of shock-absorbing system 20 is constituted of two airbags 21 and a connecting tube 22 which communicates the two airbags 21. The multiple rows of the shock-absorbing system 20 are in turn arranged in the sole 12 along the fore-to-aft direction, and the two airbags 21 in each row of the shock-absorbing system 20 are distributed in the sole 12 along the left-and-right direction. In this embodiment, the arrangement of the multiple rows of shock-absorbing system 20 in the heel part 12a of the sole 12 improves the shock-absorbing balance effect of the air-cushion shoe. Meanwhile, since multiple rows of the shock-absorbing system 20 are distributed in the sole 12 separate with each other, even one row of the shock-absorbing system 20 goes wrong such as leakage occurs, other rows of the shock-absorbing system 20 will go on working and will not be affected, and this arrangement improves the endurance of the air-cushion shoe. Other structures or working principles of the present embodiment are described above in embodiment 1 and will be omitted herein, please refer to the description above if needed.
Embodiment 4
[0055]
[0056] The anti-sprain shock-absorbing balance air-cushion shoes provided by the aforementioned embodiments can be applied in various shoes such as sports shoes, basketball shoes, running shoes, casual shoes or leather shoes.
[0057] In view of the above, the anti-sprain shock-absorbing balance air-cushion shoes provided by the aforementioned embodiments of the invention have at least the following advantages: first, the arrangement of the shock-absorbing system in the sole, which includes the airbags and the connecting tube which communicates the airbags, can buffer the impact from the ground to the foot, and performs better shock-absorbing effect. Second, when the airbag room on one side of the sole steps onto something like stones, the airbag room on the same side will be compressed and further the airbag in the same airbag room will be compressed correspondingly. Since the airbags are communicated by a connecting tube, gas in the compressed airbag will flow into another and drive the other airbag to inflate. Further, the inflation drives the other airbag room to stretch and exerts an influence to the ground, and therefore forms a torque opposite to the tendency of the rollover of the sole. Because of this, the rolling over of the sole is prevented and the sole is kept balance relatively, therefore the sprain is effectively avoided.
[0058] While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.