Footwear, such as shoes, boots, socks, and the like, provide comfort, stability, and protection for a user's foot during use. The soles of footwear can include multiple portions to interact with the ground (e.g., an outsole), to provide additional structure or stability to the sole (e.g., a midsole), and to interface with a user's foot (e.g., an insole), each with differing structures dependent on a function of the footwear. For example, athletic footwear can have sole structures that provide cushioning and stability, whereas dress or formal shoes can have sole structures that support lifts or heels.
Systems and methods for providing footwear that facilitate distribution of a fluid held by the footwear to a foot of a user are described. A footwear structure embodiment includes, but is not limited to, a sole including an upper layer, a bottom layer, and an intermediate layer coupled between the upper layer and the bottom layer, the sole defining a cavity through the upper layer and at least a portion of the intermediate layer; and a fluid distribution structure sized and dimensioned to fit at least partially within the cavity, the fluid distribution structure including a fluid retention portion configured to retain a fluid for release to a foot of a user when the user introduces the foot onto the sole and in contact with at least a portion of the fluid retention portion.
In an aspect, a footwear structure embodiment includes, but is not limited to, a fabric sock structure defining an interior and including a sole having an upper layer within the interior; a first fastener coupled to the upper layer within the interior; and a fluid distribution structure sized and dimensioned to fit within the interior of the fabric sock structure, the fluid distribution structure including a fluid retention portion coupled to a substrate and including a second corresponding fastener coupled to the substrate to removably affix the fluid distribution structure to the sole, the fluid retention portion configured to retain a fluid for release to a foot of a user when the user introduces the foot onto the sole and in contact with at least a portion of the fluid retention portion.
This Summary is provided to introduce a selection of concepts in a simplified form that are further described below in the Detailed Description. This Summary is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used as an aid in determining the scope of the claimed subject matter.
The Detailed Description is described with reference to the accompanying figures. In the figures, the use of the same reference numbers in different instances in the description and the figures may indicate similar or identical items.
Overview
Footwear incorporates many different types of sole structures to allow specific footwear to function within desired applications. For example, athletic footwear commonly has sole structures that differ from the design of soles for dress or formal footwear. Oftentimes, footwear includes sole structures that are designed to wick away fluids from an individual's foot to facilitate a dry interior in the region from the insole to the upper. For instance, the sole of the foot typically has a high concentration of sweat pores and thick layers of skin, where substantial moisture within the shoe interior can cause discomfort and odor. However, the foot also incorporates substantial amounts of blood vessels, particularly in the heel region, where traditional sole structures keep fluids away from these areas of the foot.
Accordingly, the present disclosure is directed, at least in part, to systems and methods for providing footwear that facilitate distribution of a fluid held by the footwear to a foot of a user. In an aspect, the footwear includes a sole having a fluid retention portion positioned on an upper surface of the sole. The fluid retention portion can define a reservoir or matrix configured to receive and hold a fluid (e.g., an oil, lotion, cream, emulsion, medicament, or the like, or combinations thereof) on the upper surface of the sole such that, when a user places their foot in contact with the sole, a portion of the user's foot can interact with the fluid held by the fluid retention portion. In implementations, the fluid retention portion is positioned at a rear portion of the insole such that that heel of the individual is configured to contact the fluid retention portion when the footwear is worn by the individual.
The footwear can include support structures to house or otherwise secure a fluid distribution structure to one or more portions of the sole of the footwear. In an embodiment, the sole includes an insole defining an aperture through which the fluid distribution structure can pass for introduction into an interior of the sole. For example, the midsole can define an aperture that extends partially into the midsole that aligns with the aperture in the insole. When the fluid distribution structure is received into the apertures of the insole and midsole, the midsole at least partially surrounds the fluid distribution structure to support the fluid distribution structure on the midsole. In implementations, the fluid distribution structure includes the fluid retention portion, which substantially aligns with the aperture in the insole, such as to provide a substantially continuous surface on which the heel of the user can rest.
The support structures to house or otherwise secure the fluid distribution structure can be formed, at least in part, by the outsole. For example, the outsole can form a support platform to be received in an aperture formed through the midsole, such that the support platform extends upwards from the outsole and into the aperture of the midsole to support a removeable and replaceable fluid distribution structure at least partially within the aperture. In implementations, the insole forms a corresponding aperture that aligns with the aperture through the midsole to permit introduction of the removeable and replaceable fluid distribution structure through the insole and into the midsole to contact an upper surface of the support platform. In implementations, the fluid distribution structure includes the fluid retention portion, which substantially aligns with the aperture in the insole, such as to provide a substantially continuous surface on which the heel of the user can rest.
Referring to
The fluid retention portion 222 retains a fluid on the footwear structure 100 for release to the foot of the user when the user introduces the foot onto or into the footwear structure to interact with the fluid retention portion 222. In implementations, the fluid retention portion 222 defines a reservoir or matrix configured to receive and hold a fluid on the upper surface 106 of the sole 102 such that, when a user places their foot in contact with the sole 102, a portion of the user's foot can interact with the fluid held by the fluid retention portion 222. For example, the fluid can include, but is not limited to, an oil, lotion, cream, emulsion, medicament, or the like, or combinations thereof, supported on or within the fluid retention portion 222. In implementations, the fluid includes a blend of oils provided for interaction with the foot of the individual, such as for direct contact absorption into the skin. During use, the foot of the user exerts a downward force against the fluid retention portion 222 which in turn can release at least a portion of the fluid against the foot in response to pressure changes in the material of the fluid retention portion 222. In implementations, the fluid is utilized to counteract discomfort, ailments, odor, or the like experienced by the user through contact of the fluid with the heel and/or another portion of the foot.
The fluid retention portion 222 can be constructed from a fibrous material configured to hold the fluid on the fluid retention portion 222 when in a neutral or uncompressed state (e.g., when not interacting with the user's foot) and to release at least a portion of the fluid when in a compressed state (e.g., when interacting with the user's foot). For example, in implementations, the fluid retention portion 222 includes a wool material, such as a natural wool, synthetic wool, or combinations thereof. In implementations, the fluid retention portion 222 is constructed of a material that is distinct from the material of the sole 102 surrounding or supporting the fluid retention portion 222. For example, the sole 102 can include a material, including but not limited to, bamboo that supports a wool-based fluid retention portion 222. Alternatively or additionally, the fluid retention portion 222 includes a coloration or visual pattern distinct from the other portions of the sole 102. In implementations, at least a portion of the sole 102 is constructed from a bamboo material that is scented or otherwise fluid treated, such as by being treated with an oil, lotion, medicament, fluid, or other material.
The fluid retention portion 222 is shown in
Referring to
The intermediate layer 204 can provide a midsole for the footwear structure 100 and is coupled between the upper layer 202 and the bottom layer 206. For example, the intermediate layer 204 can be affixed between the upper layer 202 and the bottom layer 206 via an adhesive material, a fastener, or combinations thereof. The intermediate layer 204 can include a material that conforms to the contours of the user's foot during usage. For example, in implementations, at least a portion of the intermediate layer 204 includes a cork material. In implementations, the intermediate layer 204 is constructed from a material that does not substantially expand upon exposure to liquid, such as by having less than a 10% change in volume upon exposure to the liquid held by the fluid retention portion 222. Such material property can facilitate maintaining the structure of the sole 102 in instances where the fluid interacts with the intermediate layer 204 (e.g., at the rear end 108 of the sole 102), such as by preventing absorption of the fluid, expansion of the material of the intermediate layer 204, or the like.
The bottom layer 206 can include a structural material suitable for prolonged contact with the ground surface. For example, the bottom layer 206 can include a rubber or synthetic rubber material, such as a material formed at least partially from a recycled tire material. The bottom layer 206 can define one or more ridges, grooves, or other textured surface treatment (shown in
The upper 200 is shown in
The footwear structure 100 can include support structures to house or otherwise secure a fluid distribution structure to one or more portions of the sole 102. For example, referring to
The cavity 300 can be formed through a variety of configurations of the upper layer 202, the intermediate layer 204, and the bottom layer 206. For example, referring to
In implementations, the fluid distribution structure 302 positions the fluid retention portion 222 within the cavity 300 to substantially align the fluid retention portion 222 with the upper layer 202 to provide a substantially continuous surface on which the foot of the user can rest during use of the footwear structure 100. For example, in implementations, when the fluid distribution structure 302 is inserted into the cavity 300, the substrate 304 is positioned on the portion 310 and remains beneath a boundary 312 between the intermediate layer 204 and the upper layer 202. The fluid retention portion 222 can have a thickness such that the fluid retention portion 222 extends from the substrate 304 to cross the boundary 312 between the between the intermediate layer 204 and the upper layer 202 to substantially align the fluid retention portion 222 with the upper layer 202. Alternatively or additionally, portions of the fluid retention portion 222 can extend outwardly from the substrate 304 beyond the upper layer 202, such that, upon compression of the fluid retention portion 222 by the user, the fluid retention portion 222 aligns with the upper layer 202 to provide a substantially continuous surface on which the foot of the user can rest during use of the footwear structure 100.
Referring to
In implementations, the fluid distribution structure 302 positions the fluid retention portion 222 within the cavity 300 to substantially align the fluid retention portion 222 with the upper layer 202 to provide a substantially continuous surface on which the foot of the user can rest during use of the footwear structure 100. For example, in implementations, when the fluid distribution structure 302 is inserted into the cavity 300, the substrate 304 is positioned on the support platform 600 beneath the boundary 312 between the intermediate layer 204 and the upper layer 202. The fluid retention portion 222 can have a thickness such that the fluid retention portion 222 extends from the substrate 304 to cross the boundary 312 between the between the intermediate layer 204 and the upper layer 202 to substantially align the fluid retention portion 222 with the upper layer 202. Alternatively or additionally, portions of the fluid retention portion 222 can extend outwardly from the substrate 304 beyond the upper layer 202, such that, upon compression of the fluid retention portion 222 by the user, the fluid retention portion 222 aligns with the upper layer 202 to provide a substantially continuous surface on which the foot of the user can rest during use of the footwear structure 100.
The removeable and replaceable fluid distribution structure 302 can include structures to temporarily affix the fluid distribution structure 302 within the cavity 300, such as to prevent the fluid retention portion 222, the substrate 304, or combinations thereof from leaving the cavity 300 during use of the footwear structure 100. In implementations, the fluid retention portion 222, the substrate 304, or combinations thereof includes a fastener to temporarily affix the fluid distribution structure 302 to one or more surfaces of the cavity 300. For example, the substrate 304 is shown having a fastener 314 coupled to a bottom surface of the substrate 304 to interface with a corresponding fastener 316 in the cavity 300 (e.g., positioned on the portion 310 of the intermediate layer 204 or on the upper surface 604 of the support platform 600). The fasteners 314, 316 can include, but are not limited to, adhesives, hook and loop structures, snap structures, clip structures, or the like, where the footwear structure 100 can include the fasteners 314, 316 individually or in combination.
The cavity 300 is shown in
During use of the footwear structure 100 with the cavity 300, the user can introduce the removeable and replaceable fluid distribution structure 302 into the cavity 300 to be supported by the portion 310 of the intermediate layer 204, the support platform 600, or combinations thereof. The fluid distribution structure 302 includes the fluid retention portion 222 and fluid held by the fluid retention portion 222, which can be introduced to the fluid retention portion 222 prior to introduction to the cavity 300, subsequent to introduction to the cavity 300, or the like. During ambulation or when otherwise pushing the foot against the footwear structure 100, the foot of the user exerts a downward force against the fluid retention portion 222 to cause deformation of at least a portion of the fluid retention portion 222. As the fluid retention portion 222 deforms, at least a portion of the fluid is released against the foot in response to pressure changes in the material of the fluid retention portion 222. The fluid distribution structure 302 can be removed from the cavity 300 and replaced with a different fluid distribution structure 302, such as when use of the footwear structure 100 results in wear or fouling of the fluid retention portion 222. Additional fluid can be introduced to a multi-use fluid retention portion 222, or can be introduced to the footwear structure 100 through a different fluid distribution structure 302.
Referring to
The sock structure 802 can be formed from a material that differs that the material forming the fluid retention portion 222. For example, in implementations, at least a portion of the sock structure 802 is formed from a bamboo fabric and the fluid retention portion 222 is formed from wool. For example, the sock structure 802 can be formed from a blend of bamboo fabric and one or more additional synthetic or natural thread products (e.g., nylon, elastic, etc.). Alternatively or additionally, the sock structure 802 can be formed from a first wool material and the fluid retention portion 222 can be formed from a second wool material. In implementations, the sock structure 802 is scented or otherwise fluid treated, such as by being treated with an oil, lotion, medicament, fluid, or other material.
During use of the footwear structure 100 having the sock structure 802, the user can introduce the removeable and replaceable fluid distribution structure 302 into the interior 800 to be supported by the upper surface 804 of the sole 102 (e.g., coupling fastener 314 with fastener 316). The fluid distribution structure 302 includes the fluid retention portion 222 and fluid held by the fluid retention portion 222, which can be introduced to the fluid retention portion 222 prior to introduction to the interior 800, subsequent to introduction to the interior 800, or the like. During ambulation or when otherwise pushing the foot against the footwear structure 100, the foot of the user exerts a downward force against the fluid retention portion 222 to cause deformation of at least a portion of the fluid retention portion 222. As the fluid retention portion 222 deforms, at least a portion of the fluid is released against the foot in response to pressure changes in the material of the fluid retention portion 222. The fluid distribution structure 302 can be removed from the interior 800 and replaced with a different fluid distribution structure 302, such as when use of the footwear structure 100 results in wear or fouling of the fluid retention portion 222. Additional fluid can be introduced to a multi-use fluid retention portion 222, or can be introduced to the footwear structure 100 through a different fluid distribution structure 302.
Referring to
In implementations, the sole insert includes an overlap 900 to secure a portion of the fluid retention portion 222 between the intermediate layer 204 and the upper layer 202. For example, the sole insert shown in
Although the subject matter has been described in language specific to structural features and/or process operations, it is to be understood that the subject matter defined in the appended claims is not necessarily limited to the specific features or acts described above. Rather, the specific features and acts described above are disclosed as example forms of implementing the claims.
The present application claims the benefit under 35 U.S.C. § 119(e) of U.S. Provisional Application Ser. No. 63/084,044, filed Sep. 28, 2020, and titled “FOOTWEAR WITH FLUID DISTRIBUTION.” U.S. Provisional Application Ser. No. 63/084,044 is herein incorporated by reference in its entirety.
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