Midsole of a shoe
An athletic footwear with improved midsole that is having a helical network. The helical network can morph itself under compressive force. The helical network is made from units of an hourglass shape geometry, each unit having an upper member and a lower member. Each unit is of a wireframe geometry that is integrated with adjacent units to form a networked layer. When an external pressure is applied to the networked layer, such as when the feet wearing the footwear land on a ground, the wireframe legs in the upper member and lower member twists for providing cushioning and resiliency.
1. A midsole for a footwear, the midsole comprising a lattice structure of an area proportional to an area of the midsole, the lattice structure comprising:
a plurality of units, each unit having an upper member and a lower member, the upper member and the lower member are of a polygonal frustum geometry forming an hourglass shape geometry, the plurality of units are integrated side-by-side in an upstanding position,
the upper member comprises:
a broad hexagonal top,
a narrow base parallel to the broad hexagonal top, and
six legs that extend from a periphery of the narrow base to corners of the broad hexagonal top,
the lower member comprises:
a broad hexagonal bottom,
a narrow top that is parallel to the broad hexagonal bottom, and
six lower legs that extend from a periphery of the narrow top to corners of the broad hexagonal bottom,
wherein,
the narrow base of the upper member and the narrow top of the lower member are bonded to form a neck of the unit,
the six upper legs and the six lower legs are arranged offset to each other,
the six upper legs and the six lower legs are configured to bulge outwards under an external compressive force up to a predetermined range of the force and above the predetermined range of the force, the six upper legs and the six lower legs helically twist, the six upper legs twist in a clockwise direction and the six lower legs twist in an anti-clockwise direction.
2. The midsole according to claim 1 , wherein each leg of the six lower legs has a mid-point dividing the leg into two parts, the part adjacent the broad hexagonal bottom bends inwards at an angle of 5-20 degrees relative to a vertical axis perpendicular to the broad hexagonal bottom, the second part adjacent the narrow top bends inwards at an angle between 15-34 degrees relative to the vertical axis.
3. The midsole according to claim 1 , wherein each leg is of a diameter ranging from about 0.75 mm to 1.9 mm.
4. The midsole according to claim 1 , wherein the lattice structure is broadest in a heel area and gradually tapers towards a toe of the footwear.
5. The midsole according to claim 1 , wherein the midsole further comprises a shock-absorbing gel matrix encapsulating the lattice structure.
6. The midsole according to claim 5 , wherein the upper member and the lower member are bonded through a snap fit mechanism.
7. The midsole according to claim 6 , wherein the gel matrix comprises apertures of a dimension to receive the narrow base of the upper member and the narrow top of the lower member.
8. The midsole according to claim 1 , wherein the midsole further comprises an outer rim surrounding the lattice structure for preventing ingress of dirt and grit.
9. The midsole according to claim 1 , wherein the midsole further comprises a pair of load distribution plates sandwiching the lattice structure.
10. The midsole structure according to claim 1 , wherein each unit is integral with six adjacent units to form the lattice structure, wherein a side of the broad polygonal top of one unit is integral with a side of a broad polygonal top of an adjacent unit, wherein a side of the broad polygonal bottom of the one unit is integral with a side of a broad polygonal bottom of the adjacent unit.
11. A footwear comprising an upper portion, an outer sole and a midsole, the midsole sandwiched between the upper portion and the outer sole, the midsole comprising a lattice structure, the lattice structure comprising:
a plurality of units, each unit having an upper member and a lower member, the upper member and the lower member are of a polygonal frustum geometry forming an hourglass shape geometry, the plurality of units are integrated side-by-side in an upstanding position,
the upper member comprises:
a broad hexagonal top,
a narrow base parallel to the broad hexagonal top, and
six legs that extend from a periphery of the narrow base to corners of the broad hexagonal top,
the lower member comprises:
a broad hexagonal bottom,
a narrow top that is parallel to the broad hexagonal bottom, and
six lower legs that extend from a periphery of the narrow top to corners of the broad hexagonal bottom,
wherein,
the narrow base of the upper member and the narrow top of the lower member are bonded to form a neck of the unit,
the six upper legs and the six lower legs are arranged offset to each other,
the six upper legs and the six lower legs are configured to bulge outwards under an external compressive force up to a predetermined range of the force and above the predetermined range of the force, the six upper legs and the six lower legs helically twist, the six upper legs twist in a clockwise direction and the six lower legs twist in an anti-clockwise direction.