Abstract:
An article of footwear with a heel cushioning system is disclosed. The heel cushioning system includes a sole, a curved plate and tread members. The tread members may lift a heel portion of a sole above a ground surface. The curved plate may deflect when a force is applied to the sole.
Abstract:
According to the principles of the first embodiment of the present invention, a midsole of a shoe comprising an integral midsole, an outer sole with transparent discs, a board last of tractable stiffness; a mechanical spring located within the midsole; and, an upper shoe body. The shoe being capable of providing line-of-sight viewing of the internally mounted contrivances for structural monitoring throughout the life of the shoe so as to improve durability, process of making comfort and acceptability.
Abstract:
The present invention relates to an outsole for a shoe which lessens the impact on a wearer's heel region to aid in preventing and treating heel spurs. The rear portion of the outsole comprises a heel region having a cut-out in a center part of the heel region such that the center part of the heel region never contacts a surface when worn. This aspect is central to the function of the present invention since the positioning of the cut-out eliminates impact on a wearer's heels. Rather, pressure from impact is distributed from the center of the heel to the outer edges of the heel region which symmetrically flank the cut-out. Finally, the present invention relates to a shoe comprising an upper attached with an outsole or formed as one piece with an outsole as previously described.
Abstract:
A sole component and a method of manufacturing the sole component are disclosed. In general, the sole component includes a fluid-filled bladder and a reinforcing structure extending around the bladder. The reinforcing structure is bonded to the exterior of the bladder, and may be recessed into the bladder. In some embodiments, the reinforcing structure extends along the side surfaces of the bladder and between upper and lower surfaces of bladder. In manufacturing the sole component, the reinforcing structure may be located within a mold, and the polymer material forming the bladder may be bonded to the reinforcing structure during the molding process.
Abstract:
A sole component and a method of manufacturing the sole component are disclosed. In general, the sole component includes a fluid-filled bladder and a reinforcing structure extending around the bladder. The reinforcing structure is bonded to the exterior of the bladder, and may be recessed into the bladder. In some embodiments, the reinforcing structure extends along the side surfaces of the bladder and between upper and lower surfaces of bladder. In manufacturing the sole component, the reinforcing structure may be located within a mold, and the polymer material forming the bladder may be bonded to the reinforcing structure during the molding process.
Abstract:
A sole component and a method of manufacturing the sole component are disclosed. In general, the sole component includes a fluid-filled bladder and a reinforcing structure extending around the bladder. The reinforcing structure is bonded to the exterior of the bladder, and may be recessed into the bladder. In some embodiments, the reinforcing structure extends along the side surfaces of the bladder and between upper and lower surfaces of bladder. In manufacturing the sole component, the reinforcing structure may be located within a mold, and the polymer material forming the bladder may be bonded to the reinforcing structure during the molding process.
Abstract:
A footwear sole having a dual-structure midsole, in which a seesaw movement can be performed to enhance an exercise effect during walking. The seesaw-motion footwear sole includes a main midsole having a convex projection in the central portion of the underside thereof to define a walking axis; a sub-midsole coupled to the underside of the main midsole and made of a softer material than that of the main midsole in order to exhibit a primary shock absorbing function, wherein the sub-midsole allows the main midsole to perform a seesaw movement on the basis of the walking axis in backward and forward directions during walking; and an outsole coupled to the sub-midsole. The seesaw-motion footwear sole can be applied to a variety of shoes such as running shoes, and can advantageously provide an excellent exercise effect, which is superior to that provided by heelless shoes of the prior art.
Abstract:
A sole structure is provided that can improve cushioning and bending properties of the sole heel portion. The sole assembly 1 is formed of an upper plate 2 disposed on the upper side of the heel portion H, a wavy lower plate 3 provided below the upper plate 2 in the heel portion H and having at least two convex portions 30, 31 that protrude downwardly and that are adapted to form voids C relative to the upper plate 2, and a plurality of outsole portions 51-55 that are divided in the longitudinal direction and that are attached to the lower surfaces of the convex portions 30, 31 of the lower plate 3.
Abstract:
A sole for walking has a ground contacting face referred to as the bottom part, and a top part being opposite the bottom part. The sole has the bottom part with a number of recesses. The recesses are closed off by the top part and are for trapping a portion of a material on which a person moves. Each recess is provided with at least one decompression channel producing a free junction between an interior of each recess and an external perimeter of the sole.
Abstract:
A climbing shoe with a tension support attached to the heel area and toe area of the sole to assist climbers in maintaining a curve shape in their foot. The tension support pulls on the heel area and toe area of the sole to assist the climber in maintaining the ideal curve shape to support their weight on small footholds. The tension support reduces the fatigue on the climber's foot and calf muscles. The curve shape of the foot with the toes pointing down is ideal when a climber must support his entire weight with his toes on small footholds. The tension support is made of an elastic material that can flex and allow the sole to flatten out on larger footholds.