The present invention relates to a shoe construction and, more particularly, to a three layered shoe construction with an outsole having a unique scored and stair-step type pattern on its exterior face and carved out sections on its interior face to enhance traction, flexibility, comfort and to reduce weight, a dual density midsole with cavities to allow for additional flexibility, and an insole having a novel scored pattern for increased breathability and flexibility coupled with a raised arch area for providing additional support to the arch of the foot.
Numerous shoes, covering a broad range of different designs and styles have been manufactured and sold in the marketplace. While shoes are worn to provide protection to one's feet, to reduce the impact felt when walking on hard surfaces, to provide support for the feet, and to prevent pronation, shoe designers must still seek to provide optimum levels of stability and comfort. In order to accomplish all of these objectives, shoe designers have used a wide variety of different tools and methods including heel plugs, shanks, contoured soles, deformable pillars or columns, spring-like structures, different traction designs, cushioning members, different shank designs, different ventilation structures, rocker elements, pads, gels and sole constructions having a plurality of different layers. Although these methods can be effective, the large number of components can result in increased manufacturing costs and complexity. It is therefore desirable to improve cushioning, flexibility, support and stability without increasing the number of components to achieve the same level of comfort for the user.
The present invention is directed to a three layer shoe construction which includes an outsole, midsole, and insole, and a pair of cushioning insets receivable within the outsole. The three layers have a mating relationship which will be later described in detail. The three components of the present shoe are preferably secured together through conventional means such as through cementing and/or adhesives thereby preventing relative movement between the layers during assembly and use of the present shoe. Each of the three layers of the present shoe are generally in the shape of a human foot and can be divided into different sections according to the three different regions of the human foot—the forefoot, the midfoot, and the hind foot. The forefoot is generally adjacent to and includes the toe area, the hind foot is generally adjacent to and also includes the heel area; and the midfoot is located adjacent to both the forefoot and the hind foot. The ball of the foot is generally the area of the foot at the juncture between the metatarsal bones and the phalange bones. The two primary regions of the foot for load bearing when walking or standing normally are the ball area and the heel area, and the major bending of the shoe during normal use is typically in the ball area. The arch or instep is positioned between the heel and ball areas, and flexes very little when walking normally.
The present outsole is made out of a super lightweight thermoplastic rubber (TPR) and includes an exterior and interior face. The exterior face of the present outsole engages the ground or other walking surfaces, while the interior face is located opposite the exterior face and has a mating relationship with the midsole as will be hereinafter further described in more detail.
The exterior face of the present outsole includes a first section, a second section, and a third section, the first and second sections including a stair step type design forming a plurality of horizontal flat surfaces at the forefoot and midfoot areas of the outsole respectively, whereas the third section includes a plurality of scored projections forming ridges with corresponding grooves therebetween at the hind foot area. More specifically, each of the stair step type horizontal flat surfaces of the first section includes a scored pattern on the exterior face of the outsole with a groove between each flat surface for better traction and water displacement. Each of the stair step type surfaces of the second section includes a non-scored pattern with a groove between each flat surface for better traction and water displacement, and each of the projections of the third section includes a scored pattern as well. In other words, the plurality of grooves associated with each of the first, second and third sections promotes better traction and water displacement while the scored pattern on the first and third sections further promotes improved traction and improved water displacement. The specific stair step type surfaces, projections and plurality of grooves in each section of the exterior face of the outsole enhances traction while still providing for additional flexibility needed to allow the foot to roll through each step and push off normally while walking or running.
The interior face of the present outsole has a cavity located both at the forefoot and hind foot areas for receiving a cushioning pad respectively therewithin. The forefoot cavity on the interior face of the outsole has a plurality of horizontal wave-like protrusions associated therewith, some of which cut into the sidewall of the outsole. The protrusions or ribs give some strength to the forefoot area of the outsole while also providing a recess for keeping one of the cushioning pads from slipping or moving in the outsole. The cuts into the outsole sidewall in the forefoot area also provide more flexibility where a user's foot would normally flex. The hind foot cavity includes a plurality of substantially straight protrusions or ribs therewithin and one longitudinally extending rib which likewise provide some strength to the hind foot area of the outsole and which likewise also provides a recess for keeping another cushioning pad from moving or slipping within the cavity. The center on midfoot section of the interior face of the outsole likewise includes a plurality of substantially straight protrusions or ribs and one longitudinally extending rib, these ribs extending higher than the ribs associated with the forefoot and hind foot sections to provide better support to the midfoot area and arch area of a user's foot while still including hollow spaces or cavities to reduce weight. The plurality of wave-like and straight protrusions allow for additional flexibility and shock absorption in the outsole and the wave-like protrusions also diffuse weight across the ball of the foot. The cavities or recesses in the forefoot and hind foot areas also help to reduce weight.
The present midsole is made of a dual density blown ethylene-vinyl acetate copolymer (EVA) with an intrinsic molded arch support which supports the arch of the foot. The EVA creates a lightweight and resilient midsole which helps dissipate shock when walking or running. In addition to the material itself, the dual density of the midsole allows for greater flexibility and cushioning in the forefoot area due to its lighter density, and provides greater support and stability in the hind foot area due to its heavier density.
The midsole has an upper and a lower face. The upper face has a lip around the entire circumference of the midsole thereby creating a cavity on the upper face which is substantially in the shape of the insole while its lower face is substantially planar and is shaped to be received by the interior face of the outsole. The outsole has a mating relationship with the midsole wherein the lower face of the midsole mates with and is received by the interior face of the outsole. Similarly, the insole also has a mating relationship to the midsole wherein the insole mates with and is received by the cavity created by the lip on the upper face of the midsole. The three layers are preferably secured together in a conventional manner to prevent movement when worn. The lower face of the midsole includes a plurality of openings and ridges to allow for additional flexibility and to further reduce weight.
The present insole is made of a lightweight, thermal molded EVA with an antimicrobial shield which provides protection against bacteria, fungus, and controls or eliminates odors, stains, and product deterioration. This can be accomplished by adding a powder or other antimicrobial agents during the manufacturing process. The insole has a top face and a bottom face, wherein the top face engages with the foot of a wearer and has a unique scored pattern that provides both a cushioning effect and greater breathability when the present shoe is worn. In one embodiment, the scored pattern includes a plurality of non-linear grooves covering the entire top face of the insole forming a plurality of non-linear raised projections. This non-linear geometric pattern spirals outwardly around the arch area and extends substantially in a horizontal direction across the heel and forefoot areas. This non-linear pattern is also raised in the arch area to fit the supportive midsole arch design thereby providing comfort, breathability and additional flexibility.
The present three layer shoe construction absorbs shock, enhances comfort, and creates a unique propulsion effect, without requiring a vast number of components.
For a better understanding of the various embodiments of the present invention, reference may be made to the accompanying drawings in which:
While the disclosure is susceptible to various modifications and alternative forms, specific embodiments thereof are shown by way of example in the drawings and will hereinafter be described in detail. It should be understood, however, that the drawings and detailed description presented herein are not intended to limit the disclosure of the present invention to the particular embodiment disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the present disclosure.
The present invention will now be described with reference to the drawing figures in which like reference numerals refer to like parts throughout the disclosure. For purposes of clarity in illustrating the characteristics of the present invention, proportional relationships of the elements have not necessarily been maintained in the drawing figures.
As illustrated in
Each of the three layers of the present shoe are generally in the shape of a human foot and can be divided into different sections according to three distinct regions of the human foot—the forefoot, midfoot, and hind foot. The forefoot area or region of the foot is approximately adjacent to and includes the toe area A, while the hind foot area or region of the foot is approximately adjacent to and includes the heel area B. The midfoot area or region is approximately adjacent to both the forefoot and hind foot region as illustrated in
The present outsole 12 is made out of a super lightweight thermoplastic rubber (TPR) and has an exterior face 14 and an interior face 16 as seen in
In one embodiment, the exterior face 14 of the outsole 12 has a first section 18, a second section 20, and a third section 22, divided approximately into the forefoot, midfoot, and hind foot areas respectively as best illustrated in
The third section 22 associated with the exterior face 16 of the outsole 12 includes a plurality of scored projections 36 as best illustrated in
Turning to
The hind foot cavity 44 includes a plurality of substantially straight protrusions or ribs 56 and one longitudinally extending rib 58 as best illustrated in
The area 65 above the protrusions 50 forms a space or cavity for receiving a cushioning pad 66 which is sized and shaped to be positioned within the space or area 65 as best illustrated in
As shown in
The sidewall 74 of the midsole 70 includes a raised area 76 which extends completely around the heel area and tapers into the midfoot and forefoot areas as illustrated in
Substantially similar to the lower face 80, the upper face 78 of midsole 70 also includes a lip 86 around the entire circumference of the midsole 70 thereby creating a cavity 88 as best seen in
As illustrated in
From the foregoing, it will be seen that the various embodiments of the present invention are well adapted to attain all the objectives and advantages hereinabove set forth together with still other advantages which are obvious and which are inherent to the present structures. It will be understood that certain features and sub-combinations of the present embodiments are of utility and may be employed without reference to other features and sub-combinations. Since many possible embodiments of the present invention may be made without departing from the spirit and scope of the present invention, it is also to be understood that all disclosures herein set forth or illustrated in the accompanying drawings are to be interpreted as illustrative only and not limiting. The various constructions described above and illustrated in the drawings are presented by way of example only and are not intended to limit the concepts, principles and scope of the present invention.
Many changes, modifications, variations and other uses and applications of the present invention will, however, become apparent to those skilled in the art after considering the specification and the accompanying drawings. All such changes, modifications, variations and other uses and applications which do not depart from the spirit and scope of the invention are deemed to be covered by the invention which is limited only by the claims which follow.