The present disclosure relates to dress shoes. More specifically, the present disclosure relates to shoes designed to maintain a structured and elegant look while being adapted for comfort when worn and walked in, even for long periods of time. The features disclosed herein may be used in various types of shoes, including women's high heeled shoes and other types of dress shoes.
Shoes may be designed to protect, support and provide comfort to the foot of a wearer while performing various activities. Shoes may also function as a fashion accessory, designed to coordinate with the attire and enhance the physical appearance of the wearer. Fashion may influence certain design elements of shoes, such as high heels or stiff constructions, that negatively impact the comfort of the shoe.
The present disclosure relates to a shoe designed to enhance comfort and support for the wearer without making the shoe clunky or unattractive. The shoe may remain comfortable to the wearer during long periods of standing and walking, without compromising the look of the shoe.
In an implementation, the comfortable dress shoe may comprise a flexible upper structure having a stretchy leather outside layer, a zonal-structured cloth layer, and a stretchy leather lining layer. In an implementation, the zonal-structured cloth layer may be formed with zonal holes. In an implementation, the dress shoe may comprise a high-heeled dress shoe.
In an implementation, the comfortable dress shoe may comprise an insole having a multi-layer construction. In an implementation, the multi-layer construction may comprise a leather layer; a suede layer; and a cushion layer. In an implementation, the cushion layer may comprise a multi-point support system. In an implementation, the multi-point support system may comprise a toe crest; an arch support; and a heel support. In an implementation, at least one of the toe crest, the arch support and the heel support may comprise an ethylene-vinyl acetate material.
In an implementation, the comfortable dress shoe may comprise a cushioned support structure. In an implementation, the insole may be at least partially disposed on top of the cushioned support structure. In an implementation, the cushioned support structure may be disposed on top of a midsole. In an implementation, the suede layer may comprise breathable holes which allow expansion of the cushioned support structure. In an implementation, the cushion layer may comprise a cutout disposed to receive at least a portion of the cushioned support structure.
In an implementation, the cushioned support structure of the comfortable dress shoe may comprise a cushioned balance structure; and a cushioned circle structure having at least one layer, and positioned on top of the cushioned balance structure. In an implementation, the cushioned balance structure and the cushioned circle structure may provide metatarsal support. In an implementation, the cushioned circle structure may comprise a left circle structure having at least one layer; and a right circle structure having at least one layer.
In an implementation, the comfortable dress shoe may comprise an outsole of mixed material. In an implementation, the outsole may comprise a leather outsole portion; and a rubber outsole portion.
In an implementation, the comfortable dress shoe may comprise a flexible upper structure operable to conform to the wearer's foot while adjusting to variations (expansion and shrinkage) in the size of the foot at different times of day and during different seasons.
In an implementation, the comfortable dress shoe is designed to avoid weight concentration at the front of the foot. The shoe may adjust weight to be evenly distributed in the front, middle, and back of the foot.
In an implementation, the comfortable dress shoe is designed to add stability by increasing grip on the outside and the inside of the shoe.
In an implementation, the comfortable dress shoe may comprise a zonal-structured cloth inserted between the flexible upper and a lining. In an implementation, this shoe structure may provide structural support to maintain the shape and structure of the shoe while allowing stretch to conform to the wearer's foot.
In an implementation, the comfortable dress shoe may comprise an insole with a cushion layer having a three-point support system comprising supports positioned in the toe crest area, the arch area, and the outer ring of the heel cap. In an implementation, this three-point support system achieves one or more of the following: reduction of shock in the front of the foot, even distribution of weight throughout the shoe, and maintaining the foot in the proper position within the shoe instead of slipping forward.
In an implementation for a high-heeled shoe (a shoe having a heel which is approximately 9.5 cm or greater), the comfortable dress shoe may comprise a five-point support system comprising supports positioned in: 1) the toe crest area (for the big toe, second toe, and third toe); 2) the first and second metatarsal area; 3) the third and fourth metatarsal area; 4) the arch of the foot; and 5) the outer ring of the heel cap. In an implementation, this five-point support system achieves one or more of the following: reduction of shock in the front of the foot, even distribution of weight throughout the shoe, and maintaining the foot in the proper position within the shoe instead of slipping forward.
In an implementation, the comfortable dress shoe may comprise a combination of leather and suede in the insole of the shoe. In an implementation, this combination increases grip between the foot bed and the insole.
In an implementation, the comfortable dress shoe may comprise rubber added to the outsole of the shoe to cover the tip and the ball of the foot. In an implementation, this rubber increases grip between the shoe and a walking surface.
The details of one or more implementations are set forth in the accompanying drawings and the description below. Other features, objects, and advantages of the implementations will be apparent from the description and drawings.
For a more complete understanding of this disclosure and its features, reference is now made to the following description, taken in conjunction with the accompanying drawings, in which:
Like reference symbols in the various drawings indicate like elements.
Dress shoes are typically constructed with more emphasis on fashion than on functionality. Dress shoes are often formed with leather uppers that have a structured and smooth finish, making them inherently less comfortable than sandals or sneakers. Moreover, women's high-heeled shoes present additional challenges with fit and weight distribution. Since the upper only covers part of the foot and there are no shoe laces to help correct sizing discrepancies, women's high-heeled shoes are more likely to be ill-fitted to the wearer's foot than other types of dress shoes, causing rubbing and blisters during walking. Additionally, since the foot is angled in a high-heeled shoe, 80-90% of the body weight is put on the ball (metatarsals) and toes of the foot, while the heel of the foot functions to help maintain balance during walking, causing pain in those areas.
Methods for enhancing the comfort level of high-heeled shoes have been attempted, such as inserts. However, inserts do not fit all shoe types and often end up over-crowding the already-limited space in a high heeled shoe. There have also been different cushioning systems attempted, often by replacing the rigid part of the midsole or insole with softer cushioning. This approach, while providing instant softness to the bottom of the foot, fails to ergonomically correct weight distribution. For example, arch cushioning may be added to the insole of the shoe, but since the arch does not bear much of the body weight, the problem of metatarsal pain persists. In addition, soft material in the insole or midsole also further compromises the supporting structure of the shoe. As a result, the wearer experiences fatigue in the feet after long periods of walking or standing.
In an implementation, both the lining 1 and the outside layer 4 are formed of leather with a stretchy fabric, such as Leather with Lycra®. Traditional soft leather, such as lambskin leather, may be layered with Lycra® fabric (97% cotton, 3% Lycra®—with a stretch percentage of roughly 30%) to add flexibility and elasticity while maintaining the look and feel of leather.
To ensure the zonal-structured cloth layer 2 does not show on the outer layer 4 and compromise the smooth look of the upper 110, the thickness of the outer layer 4 may be greater, in the range of 1 to 1.1 millimeters, for example, as compared to the thickness of the zonal-structured cloth layer 2, in the range of 0.3 millimeters, for example.
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It is to be understood the implementations are not limited to particular systems or processes described which may, of course, vary. It is also to be understood that the terminology used herein is for the purpose of describing particular implementations only, and is not intended to be limiting. As used in this specification, the singular forms “a”, “an” and “the” include plural referents unless the content clearly indicates otherwise. As another example, “coupling” includes direct and/or indirect coupling of members.
Although the present disclosure has been described in detail, it should be understood that various changes, substitutions and alterations may be made herein without departing from the spirit and scope of the disclosure as defined by the appended claims. Moreover, the scope of the present application is not intended to be limited to the particular embodiments of the process, machine, manufacture, composition of matter, means, methods and steps described in the specification. As one of ordinary skill in the art will readily appreciate from the disclosure, processes, machines, manufacture, compositions of matter, means, methods, or steps, presently existing or later to be developed that perform substantially the same function or achieve substantially the same result as the corresponding embodiments described herein may be utilized according to the present disclosure. Accordingly, the appended claims are intended to include within their scope such processes, machines, manufacture, compositions of matter, means, methods, or steps.
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