Abstract:
Provided herein are embodiments of a shoe component. The shoe component may include a toebox, an insole, an adhesive membrane, a thermal-resistant insert, a midsole, and an outsole. The insert may further include a footbed. The footbed may include an upper surface and a bottom surface. The insert may further include an upper laminate on the upper surface of the footbed and a lower laminate on the bottom surface of the footbed.
Abstract:
Provided herein are embodiments of a shoe component. The shoe component may include a toebox, an insole, an adhesive membrane, a thermal-resistant insert, a midsole, and an outsole. The insert may further include a footbed. The footbed may include an upper surface and a bottom surface. The insert may further include an upper laminate on the upper surface of the footbed and a lower laminate on the bottom surface of the footbed.
Abstract:
A disposable insole pad includes an absorbent layer, a removable skin adhesive, a first release liner, and an anti-slip member. The removable skin adhesive is attached to the top surface of the absorbent layer, and the anti-slip member is attached to the bottom surface of the absorbent layer. The removable skin adhesive is intended to be removably attached to a user's foot, and a first release liner is provided to cover the removable adhesive. The user wears the present invention by removing the first release liner and attaching his foot to the removable skin adhesive, and then, he wears a shoe such that the anti-slip member is to be in contact with a shoe insole.
Abstract:
Disposable insole pads and use thereof are disclosed. The disposable insole pads are multilayer structures comprising a topsheet and a pressure sensitive adhesive, and optionally a backsheet, silicone coating and liner layers. The pressure sensitive adhesive layer allows the disposable insole pads to be positioned, repositioned and removed, making them well suited for daily use and disposal.
Abstract:
Waterproof, breathable socks, booties, shoe inserts, and footwear assemblies containing the shoe inserts are provided. The booties and shoe inserts may include a laminate comprising a seamless extensible film, such as a polyurethane film, and at least one textile. The bootie is suitable for a range of sizes and shoe shapes. The bootie may shrink to fit, or, alternatively, be stretched to fit, an asymmetrical last having a desired size to form a shoe insert. A bootie having a seamless extensible film eliminates the need to have multiple sizes of shoe inserts correlating to particular shoe sizes. In embodiments where the polyurethane film is seamless and continuous, the shoe insert eliminates the need for a waterproof seam tape, which is conventionally used to make shoe inserts waterproof. Methods of forming the socks, booties, and shoe inserts are also provided.
Abstract:
A biodegradable and disposable shoe liner is made of a first layer impregnated with a deodorant and an absorbent, a second layer made of a moisture-resistant material, and an adhesive layer on the bottom side of the second layer for temporary attachment to the foot bed of a shoe. A peel-off layer of paper covers the adhesive layer to prevent the shoe liners from sticking to each other or other objects before use.
Abstract:
There is a footwear combination system that has a wearable insole and an article of footwear. The wearable insole has an upper portion and a sole or inner sole, and the article of footwear has an outer sole and an upper covering. The article of footwear also lacks an inner sole, which is provided by the wearable insole. The wearable insole is sized to fit within the article of footwear to be worn in conjunction with the article of footwear. However, the wearable insole can also be worn on its own. When worn together, the sole of the wearable insole acts as the sole for the article of footwear, and functions as an inner sole/outer sole when worn without the article of footwear. The article of footwear may be any type of footwear including boots, athletic shoes, dress shoes, and high heels.
Abstract:
A system for removing moisture from a user's skin includes a casing having a first portion made of a material including hydrophilic and hydrophobic fibers configured to convey a liquid and/or vapor from outside to inside. The first portion configured to contact, or be near, a user's body part. The casing includes a second portion not configured to contact the body part, and at a third portion joining the first and second portions. The second and/or third portions are made of material configured to convey a liquid and/or vapor from inside to outside the casing. Padding, enclosed between the first and second portions, has a porous structure enabling the inside to be ventilated by vapor exiting the casing by contraction of a volume of the padding causing air to enter the casing by expansion in the volume of the padding. The porous structure has a resiliently compressible variable volume.
Abstract:
Socks with ribs, channels and padding positioned to facilitate moisture movement from the interior of the sock upwardly and outwardly from a shoe or boot to aid in maintaining a dry condition for a sock and footwear. The sock heel may have an ankle open end that is connected to a leg portion. The tubular portion of the sock has multiple tube ribs transversally positioned and longitudinally spaced apart to form multiple tube channels wherein the tube ribs are formed by at least one additional yarn of material extending from an inner surface of the tubular portion. A portion of the multiple tube ribs are curved from a straight line on at least a portion of the inner surface to extend upwardly into the instep portion and may curve towards the heel portion. The toe portion of the sock may have toe ribs extending upwardly toward the instep portion.
Abstract:
A method of manufacturing a shoe lining having anti-microbial properties having the steps of: providing a quantity of a thermoplastic resin including an inorganic zinc-based anti-microbial agent admixture having a predetermined microbial inhibition characteristic; blending the thermoplastic resin with a polyethylene resin to form an anti-microbial feedstock; forming the anti-microbial feedstock into relatively long, narrow, thin lengths of anti-microbial members; weaving the anti-microbial members into an anti-microbial fabric having predetermined microbial inhibition characteristics; cutting the anti-microbial fabric into a plurality of pieces in accordance with a predetermined pattern; and joining the pieces of anti-microbial fabric together thereby constructing the anti-microbial shoe lining.A sock liner may be knitted from anti-microbial members as noted above.