IP Library › Granted Patent US 11,445,784
Granted Patent B2
US 11,445,784 · App. 16/592,883 · Granted Sep 20, 2022

Adjustable response elastic kinetic energy converter and storage field system for a footwear appliance

Inventors: Christopher A. Brown (Waterbury Center, VT); James J. Muller (Worcester, MA); Winton Parker (Waitsfield, VT); Allysa Grant (Worcester, MA); Tristin J. Carlton (Coventry, RI); Nicholas Workman (Worcester, MA); Michael Doyle (Worcester, MA); Jessica Shelsky (Worcester, MA); Jessica K. Y. Cheu (Worcester, MA); Lorenzo Dube (Worcester, MA); Pedro D. Oporto (Worcester, MA); Olivia G. Steen (Worcester, MA); Andrew R. Vickery (Worcester, MA)
Assignee: Worcester Polytechnic Institute
A43B13/127A43B13/04A43B13/185
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Quick Facts
Patent No.
US 11,445,784
App. No.
16/592,883
Granted
Sep 20, 2022
Kind
B2
Abstract

A force absorbing device for a footwear appliance includes a shoe upper and a shoe sole having a planar sole surface, such that forces between the shoe upper and planar sole surface in ground contact are absorbed by force mitigation structures disposed in the shoe sole. A footwear article includes a split-sole system that redefines a shoe sole as coplanar surfaces having a force mitigating interface for receiving sudden forces and effectively mitigating these forces by storing kinetic energy and releasing it over time. An elastic field in the force mitigation structure is defined by a resilient material adapted to deform in response to the received force. Frictional engagement between the upper and lower sole may also be augmented by surface characteristics such as dimples, voids and lubricants, in addition to interference engagement with an elastic field.

Claims (20)

1. An impact absorbing footwear apparatus, comprising:

an upper sole in communication with a wearer;

a lower sole adapted for receiving forces from a ground surface in response to movement of the footwear against the ground surface; and

an elastic field interface between the upper sole and the lower sole, the upper sole and lower sole in coplanar arrangement and adapted for parallel displacement, the elastic field interface including an actuator attached to one of the upper sole and lower sole and disposed for transferring received forces between the upper sole and lower sole.

2. The apparatus of claim 1 wherein the elastic field interface is deformable in response to a received force from the ground surface, the received force tending to dispose the upper sole and lower sole out of alignment by deformation of the elastic field interface.

3. The apparatus of claim 2 further comprising an equilibrium position defined by alignment of the upper sole and lower sole, the elastic field having a deformable member responsive to a received force by deformation, the elastic field adapted to store kinetic energy in response to the deformation for returning to the equilibrium position.

4. The apparatus of claim 1 wherein the upper sole and lower sole define opposed parallel planes, the elastic field interface including a deformable member attached to the other of the opposed parallel planes, the actuator responsive to a transfer a received force for deforming the deformable member.

5. The apparatus of claim 1 wherein the elastic field further comprises a deformable bed having an attached protrusion and an inclined surface disposed against theft protrusion and oriented to compress the elastic field in response to a lateral displacement between the upper sole and lower sole.

6. The apparatus of claim 5 wherein the deformable bed opposes the recession and the protrusion extends towards the recession.

7. The apparatus of claim 6 wherein the recession is a circular dimpled area having an incline around the deformable member, the deformable member engaging the inclined surface in response to a received force in the direction of the plane defined by the upper and lower soles.

8. The apparatus of claim 4 further comprising a slideable interface between upper sole and lower sole, the slideable interface complementing the elastic field interface with a frictional component.

9. The apparatus of claim 1 wherein the elastic field interface is defined by a force mitigation structure disposed between the upper and lower sole, the force mitigation structure including a deformable member defining the elastic field and a solid actuator adapted to deform the deformable member response to the received force.

10. A method for mitigating harmful forces between a footwear sole and a ground surface, comprising:

receiving, at a lower sole adapted for receiving forces from a ground surface in response to movement of the footwear against the ground surface, a disposing force;

deforming, in response to the disposing force, an elastic field interface between an upper sole in communication with a wearer and the lower sole, the upper sole and lower sole in coplanar arrangement and adapted for parallel displacement, the elastic field interface including an actuator attached to one of the upper sole and lower sole and disposed for transferring received forces between the upper sole and lower sole.

11. An impact absorbing footwear apparatus, comprising:

an upper sole in communication with a wearer;

a lower sole adapted for receiving forces from a ground surface in response to movement of the footwear against the ground surface; and

an elastic field interface between the upper sole and the lower sole, the upper sole and lower sole in coplanar arrangement and adapted for parallel displacement, the elastic field interface disposed for transferring received forces between the upper sole and lower sole,

the elastic field further comprising a deformable bed having an attached protrusion, and an inclined surface disposed against the protrusion and oriented to compress the elastic field in response to a lateral displacement between the upper sole and lower sole.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2026
From: WORCESTER POLYTECHNIC INSTITUTE
To: BROWN, CHRISTOPHER A.
Reel/Frame 074258/0826 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 15, 2022
From: BROWN, CHRISTOPHER A.; PARKER, WINTON; CARLTON, TRISTIN J.; WORKMAN, NICHOLAS; DOYLE, MICHAEL; SHELSKY, JESSICA; CHEU, JESSICA K.Y.; DUBE, LORENZO M.; STEEN, OLIVIA G.; GRANT, ALLYSA; MULLER, JAMES J.
To: WORCESTER POLYTECHNIC INSTITUTE
Reel/Frame 060808/0796 →
Continuity (5)
Continuation In Part 15675989 · Aug 14, 2017
Continuation In Part 13860877 · Apr 11, 2013
Provisional Application 62741823 · Oct 5, 2018
Provisional Application 61623430 · Apr 12, 2012
Related Publication 20200100562A1 · Apr 2, 2020
Cited By (1)
US 12,193,539