Shoe sole with zones filled with multiple foaming material and an interchangeable compact MagLev module
10736375 ยท 2020-08-11
Assignee
Inventors
Cpc classification
F16F6/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A43B5/0417
HUMAN NECESSITIES
A43B13/187
HUMAN NECESSITIES
F16F2222/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A43B13/186
HUMAN NECESSITIES
A43B1/0054
HUMAN NECESSITIES
International classification
F16F6/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
There have been many types of sports shoes varying in design and material. The market-leading sports shoes are Nike and Asics. Nike is famous for its patented Air Max technology and Asics for its unique liquid cushioning element technology. These are excellent shoes in its own category. Yet, sports players are also looking for a shoe that can switch between the hi-rebound high performance sports mode and soft-cushioned regular mode conveniently. Our new design of the shoe sole tackles this task with a unique approach. We design the shoe sole into three zones according to its dynamic feature and fill the corresponding zones with different foaming material and an interchangeable compact MagLev module. This new design meets the challenge and opens up a new way for shoe manufacturing.
Claims
1. A compact maglev module made by a process comprising: attaching two permanent magnets to two steel plates separately via cold bonding to form two cold-bonded magnet plates; attaching the cold-bonded magnet plates to a cushion with the cushion being in between the cold-bonded magnet plates so as to form a compact maglev structure; wrapping the compact maglev structure with an elastic protection layer; and assembling the compact maglev structure with the protection layer into a compressible jacket.
2. The maglev module of claim 1, wherein the elastic protection layer has a thickness between 0.3 mm and 2 mm.
3. The maglev module of claim 1, wherein the elastic protection layer has a tensile strength between 20 MPa and 120 MPa.
4. The maglev module of claim 1, wherein the elastic protection layer is made with elastic material having a hardness between 30 Shore A and 75 Shore A.
5. The maglev module of claim 1, wherein the compressible jacket has lock pins on its sides.
6. The maglev module of claim 1, wherein the compressible jacket is +0.2 mm larger than the elastic protection layer to accommodate the compact maglev structure wrapped in the elastic protection layer.
7. The maglev module of claim 1, wherein the compressible jacket has a tensile strength between 60 MPa and 200 MPa.
8. The maglev module of claim 1, wherein the compact maglev module is made to perform a maximum compression distance of C.
9. The maglev module of claim 8, wherein the maglev module is configured to fit inside a shoe sole which has a heel zone and forefoot cushion zones, there being a height difference of H between the heel zone and the forefoot cushion zones, and wherein the maximum compression distance C is less than the height difference H.
Description
SUMMARY OF THE INVENTION
(1) The present invention relates to making a shoe sole with zones filled with multiple foaming material and an interchangeable compact MagLev module.
(2) In our invention, we divide the shoe sole into three function zones according to its different dynamic feature i.e., two forefoot zones and a heel zone. The two forefoot zones are filled with TPU and EVA foaming material. The heel zone is designed with a cavity for placement of an interchangeable compact MagLev module. TPU and EVA are used based on its difference in elasticity since the forefoot is sensitive to outside impact and need different elasticity and comfort for the best cushioning and steering of the whole foot. For the forefoot area, the inner portion requires better gripping power and thus a better steering of the foot, so we fill this zone with hi-elasticity TPU material. For the outer portion of the forefoot, more comfort and softness is desired, so we fill this zone with soft EVA material. Then, we place the specially-made interchangeable compact MagLev module into the cavity of the heel zone. The method of making the compact MagLev module for shoe sole is as follows:
(3) In
(4) Vice versa, the compact MagLev module can be taken out and replaced easily by an interchangeable soft elastic cushion module when a soft and more comfortable heel support is desired. The interchangeable soft elastic cushion has the same dimension as that of the compact MagLev module it replaces. The interchangeable soft elastic cushion also comes in various size and elasticity thus providing a wide choice of adjustment in the heel zone cushioning. This makes our shoe sole versatile in function. It is versatile with regard to the changing requirement of the wearer in shoe sole elasticity and comfort. This shoe sole minimizes the use of chemical fillers and has a good air permeability, which prevents the moisture from accumulate in the sole. It also prevents the growth of bacteria in the sole because of the magnetic field associated with the compact MagLev module. Thus, a shoe made with our innovative sole can provide the best performance as a high-end sports shoe. It can also be converted into a comfortable sneaker for daily wear. With our invention, it is cost-efficient to make the high-end sports shoe so that everyone who loves sports can afford to own a pair of the multi-function shoe, a shoe of their own dream.
REFERENCE
(5) 1. U.S. Pat. No. 6,234,987 B1 Mar. 1, 1999-May 22, 2001. Hsing-Yu Chen. Foot heel massaging device. 2. U.S. Pat. No. 8,689,464 B2, Oct. 28, 2010-Apr. 8, 2014. Jared David RODMAN, Joseph Andrew HABER. Magnetically-supported article of footwear.
BRIEF DESCRIPTION OF THE DRAWINGS
(6) The accompanying drawings are not intended to be drawn to scale. In the drawings, each identical or nearly identical component that is illustrated in various figures is represented by a like numeral. For purposes of clarity, not every component may be labeled in each drawing. In the drawings:
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