In general, a shoe of the present invention comprises a midsole, an outsole, an upper, a closure system and a sole stiffening member. The midsole has a midsole bottom surface, a midsole top surface, and midsole medial and lateral side surfaces extending up from the midsole bottom surface. The outsole has an outsole forefoot portion and an outsole heel portion. The outsole forefoot portion is adjacent the midsole bottom surface and the outsole heel portion is adjacent the midsole bottom surface. The upper extends up from the midsole and has an upper heel portion, an upper medial portion and an upper lateral portion. The upper heel portion is laterally between the upper medial portion and the upper lateral portion. The closure system has a medial closure portion operatively connected to the upper medial portion and a lateral closure portion operatively connected to the upper lateral portion. The closure system is adapted for movement between a tensioned condition and a loosened condition. The tensioned condition is a condition in which the closure system maintains the medial closure portion a tightened distance from the lateral closure portion. The loosened condition is a condition in which the closure system maintains the medial closure portion a loosened distance from the lateral closure portion. The loosened distance is greater than the tightened distance. The sole stiffening member has a connecting portion, a forefoot engageable portion, a heel engageable portion, a medial wing portion having a medial wing distal tip portion, and a lateral wing portion having a lateral wing distal tip portion. The forefoot engageable portion extends generally forward from the connecting portion. The heel engageable portion extends generally rearward from the connecting portion. The medial wing portion extends generally medially from the connecting portion. The lateral wing portion extends generally laterally from the connecting portion. The forefoot engageable portion is secured to the midsole bottom surface and the heel engageable portion is secured to the midsole bottom surface. The medial and lateral wing portions are positioned such that at least a portion of a straight line segment extending from the medial distal tip portion to the lateral distal tip portion is spaced over at least a portion of the midsole top surface. The portion of the midsole top surface is between the portion of the line segment and a portion of the midsole bottom surface. The sole stiffening member is adapted to provide increased support in a shank area of the shoe.
Another aspect of the invention is a shoe comprising a midsole, an outsole, an upper and a sole stiffening member. The midsole has a midsole bottom surface, a midsole top surface, and midsole medial and lateral side surfaces extending up from the midsole bottom surface. The outsole has an outsole forefoot portion and an outsole heel portion. The outsole forefoot portion is adjacent the midsole bottom surface and the outsole heel portion is adjacent the midsole bottom surface. The upper extends up from the midsole and has an upper heel portion, an upper medial portion and an upper lateral portion. The upper heel portion is laterally between the upper medial portion and the upper lateral portion. The sole stiffening member has a connecting portion, a forefoot engageable portion, a heel engageable portion, a medial wing portion having a medial wing distal tip portion, and a lateral wing portion having a lateral wing distal tip portion. The forefoot engageable portion extends generally forward from the connecting portion. The heel engageable portion extends generally rearward from the connecting portion. The medial wing portion extends generally medially from the connecting portion. The lateral wing portion extends generally laterally from the connecting portion. The forefoot engageable portion is secured to the outsole forefoot portion and the heel engageable portion is secured to the outsole heel portion. The medial and lateral wing portions are positioned such that at least a portion of a straight line segment extending from the medial distal tip portion to the lateral distal tip portion is spaced over at least a portion of the midsole top surface. The portion of the midsole top surface is between the portion of the line segment and a portion of the midsole bottom surface. The sole stiffening member is adapted to provide increased support in a shank area of the shoe.
In another aspect of the invention, a shoe comprises a midsole, an outsole, an upper and a sole stiffening member. The midsole has a midsole bottom surface, a midsole top surface, and midsole medial and lateral side surfaces extending up from the midsole bottom surface. The outsole has an outsole forefoot portion and an outsole heel portion. The outsole forefoot portion is adjacent the midsole bottom surface and the outsole heel portion is adjacent the midsole bottom surface. The upper extends up from the midsole and has an upper heel portion, an upper medial portion and an upper lateral portion. The upper heel portion is laterally between the upper medial portion and the upper lateral portion. The sole stiffening member has a connecting portion, a forefoot engageable portion, a heel engageable portion, a medial wing portion having a medial wing distal tip portion, and a lateral wing portion having a lateral wing distal tip portion. The forefoot engageable portion extends generally forward from the connecting portion. The heel engageable portion extends generally rearward from the connecting portion. The medial wing portion extends generally medially from the connecting portion. The lateral wing portion extends generally laterally from the connecting portion. The forefoot engageable portion is secured to the outsole forefoot portion and the heel engageable portion is secured to the outsole heel portion. The medial and lateral wing portions are positioned such that at least a portion of a straight line segment extending from the medial distal tip portion to the lateral distal tip portion is spaced over at least a portion of the midsole top surface. The portion of the midsole top surface is between the portion of the line segment and a portion of the midsole bottom surface. The sole stiffening member is adapted to interact with the midsole such that a portion of the midsole bottom surface adjacent the sole stiffening member is compressed as the shoe bends during use.
Other features and advantages will be in part apparent and in part pointed out hereinafter.
Corresponding reference characters indicate corresponding parts throughout the several views of the drawings.
Referring now to the drawings, and more particularly to
As shown in
The outsole shown in
The upper (
In
The sole stiffening member indicated generally in
As shown in
Referring to
The securing system 30 shown in
In use, the shoe is preferably placed on a wearer's foot by moving the closure system to a loosened condition. In a loosened condition, the medial and lateral closure portions 54 and 56 are moved apart from each other a sufficient distance to allow the wearer's foot to slide into the shoe. The shoe is then secured by placing the closure system in a tensioned condition from this loosened condition by moving the upper medial portion 48 towards the upper lateral portion 50. As the upper medial portion 48 moves towards the upper lateral portion 50, the shoe firmly holds the wearer's foot, particularly in a region of the foot adjacent the medial and lateral closure portions 48 and 50. The closure system 32 is maintained in this tensioned condition. In the embodiment shown, the shoelace of the closure portion is tied in a knot to maintain the closure system in a tensioned condition.
The sole stiffening member 28 is adapted to provide both static and dynamic support in a shank area of the shoe. The shank area of the shoe is the area of the shoe between where the heel and the ball of the foot contact the shoe. The sole stiffening member provides static support as a person stands on the shoe compressing a portion of the shoe under the foot. The compression of the shoe compacts a portion of the midsole and moves the connecting portion relatively downward. As shown by the arrows in
The sole stiffening member provides dynamic support as a person walks or runs. The sole stiffening member remains generally rigid when loaded in a longitudinal direction. By linking a heel region and a forefoot region of the shoe, the sole stiffening member can translate forces from one to the other as a result of this longitudinal rigidity. As the heel strikes the ground and the person transfers weight on to that foot, the sole stiffening member transitions some of the resulting forces into the forefoot portion of the shoe. This force transition improves the gait cycle.
In addition to the support described above the sole stiffening member 28 provides increased durability to the shoe. The action of walking or running causes the shoe to bend as the heel is lifted from the ground while the ball of the foot remains in contact with the ground. In a shoe without a sole stiffening member this cyclical bending stretches a portion of the midsole bottom surface. The repeated stretching of the midsole diminishes the resiliency of the midsole until the shoe is no longer comfortable to wear. As described above the sole stiffening member is made of a thermoplastic polyurethane material. This material will bend and is difficult to stretch. As a result the sole stiffening member bends rather than stretches during use. The bending of the sole stiffening member causes a portion of the midsole to be compressed in the region of the bending and reduces the amount of stretching in the region of the bending (as compared to bending the shoe without the sole stiffening member). This reduction of the midsole stretching increases the period of time it takes to reduce the resiliency of the midsole and thus increases the durability of the shoe.
In addition to the support and durability functions described above, the sole stiffening member 28 is adapted to operatively connect to the securing system 32. The integration into the securing system allows an additional means for preventing relative movement between the shoe and the wearer's foot. In the embodiment shown, the medial instep securing portion 82 has an opening 90 that aligns with an eyelet of the medial closure portion 54 of the closure system and the lateral instep securing portion 84 has an opening 92 that aligns with an eyelet of the lateral closure portion 56 of the closure portion. The shoelace is threaded through the medial and lateral instep securing openings 90 and 92. When the closure system is placed in the tensioned condition the medial and lateral instep securing portions 82 and 84 are drawn toward each other placing the securing system 30 and the sole stiffening member in tension. In this state, the securing system 30 and the sole stiffening member 28 squeeze the shoe such that a portion of the midsole and a portion of the upper heel portion are moved towards a wearer's foot. This compresses a portion of the shoe between the wearer's foot and the sole stiffening member 28 and the securing system 30. Securing forces are generated by the sole stiffening member 28 and the securing system 30. The securing forces are directed towards the wearer's foot.
As various changes could be made in the above constructions and methods without departing from the scope of the invention, it is intended that all matter contained in the above description or shown in the accompanying drawings shall be interpreted as illustrative and not in a limiting sense. Thus, the breadth and scope of the present invention should not be limited by any of the above-described exemplary embodiments, but should be defined only in accordance with the following claims appended hereto and their equivalents.