IP Library Granted Patent US 11,242,905
Granted Patent B2
US 11,242,905 · App. 15/748,702 · Granted Feb 8, 2022

Void cells with outwardly curved surfaces

Inventors: Jerod Dahl (Centennial, CO); Peter Foley (Castle Rock, CO); Thomas Christopher Manney (Bennett, CO)
Assignee: SKYDEX TECHNOLOGIES, INC.
F16F7/121A43B7/34A43B13/181A43B13/189A43B13/20B32B3/26B32B7/14B32B25/042B32B25/08B32B27/08B32B27/28B32B27/302B65D81/03B65D81/05F16F1/3737A41D13/0156A42B3/124B32B2307/56B32B2307/732B32B2437/02B32B2471/04B32B2479/00B32B2553/02
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Quick Facts
Patent No.
US 11,242,905
App. No.
15/748,702
Granted
Feb 8, 2022
Kind
B2
Abstract

Implementation described and claimed herein include a cushioning structure and method for manufacturing a cellular cushioning system, which allows for maximum comfort through the compression and shock cycle. Specifically, a cushioning structure comprises void cells formed in an array, which comprise multiple outwardly curved surfaces, with varying radius measurements. Stiffness in the void cells can vary by varying the Radii. Outwardly curved surfaces prevent buckling and provide support for high impact by absorbing energy.

Claims (21)

1. A cushioning structure comprising:

a first array of spaced apart elastically deformable void cells, wherein some of the void cells include four sidewalls forming a rectangular outline, at least two of the sidewalls each including only one uninterrupted outwardly curved surface and at least two uninterrupted inwardly curved surfaces, and wherein the outwardly curved surfaces constitute at least 20% of the overall exterior surface area of each void cell, wherein the cushioning structure is elastically deformable over at least 10% of its stroke, wherein each of the void cells are open to atmosphere.

2. The cushioning structure of claim 1 , further comprising:

a second array of elastically deformable void cells, wherein peak surfaces of peak portions of void cells in the second array of void cells are attached to peak surfaces of peak portions of void cells in the first array.

3. The cushioning structure of claim 1 , wherein a perimeter length substantially exceeds an overall outline length of a base portion of each of the void cells.

4. The cushioning structure of claim 1 , wherein an outwardly curved surface depth substantially recesses from an overall outline of a base portion of each of the void cells.

5. The cushioning structure of claim 1 , wherein each of the void cells includes:

a base portion that includes only the inwardly curved surfaces; and

a peak portion that includes both the outwardly curved surfaces and the inwardly curved surfaces.

6. The cushioning structure of claim 1 , wherein each of the void cells includes a dome-shaped peak portion.

7. The cushioning structure of claim 1 , wherein an overall outline of a base portion of each of the void cells is rectangular, and wherein radii of the outwardly curved surfaces are less than both half a length and half a width of the rectangular overall outline of the base portion.

8. A method of manufacturing a cellular cushioning system comprising:

molding a first array of elastically deformable void cells, some of the void cells of the first array include four sidewalls forming a rectangular outline, at least two of the sidewalls including only one outwardly curved surface and at least two inwardly curved surfaces, and wherein the outwardly curved surfaces constitute at least 20% of the overall exterior surface area of each void cell;

molding a second array of elastically deformable void cells, some of the void cells of the second array include four sidewalls forming a rectangular outline, at least two of the sidewalls including only one outwardly curved surface and at least two inwardly curved surfaces, and wherein the outwardly curved surfaces constitute at least 20% of the overall exterior surface area of each void cell; and

attaching peak surfaces of peak portions of void cells in the first array of void cells to peak surfaces of peak portions of void cells in the second array of void cells, wherein the resulting cellular cushioning system is elastically deformable over at least 10% of its stroke, wherein each of the molded void cells of the resulting cellular cushioning system are open to atmosphere.

9. The method of claim 8 , wherein a perimeter length substantially exceeds an overall outline length of a base portion of each of the molded void cells.

10. The method of claim 8 , wherein an outwardly curved surface depth substantially recesses from an overall outline of a base portion of each of the molded void cells.

11. The method of claim 8 , wherein each of the molded void cells includes:

a base portion that includes only the inwardly curved surfaces; and

a peak portion that includes both the outwardly curved surfaces and the inwardly curved surfaces.

12. The method of claim 8 , wherein each of the molded void cells includes a dome-shaped peak portion.

Assignments (2)
SECURITY INTEREST Recorded Jan 31, 2022
From: SKYDEX TECHNOLOGIES, INC.
To: MONTAGE CAPITAL II, L.P.
Reel/Frame 058830/0849 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2018
From: DAHL, JEROD; FOLEY, PETER; MANNEY, THOMAS CHRISTOPHER
To: SKYDEX TECHNOLOGIES, INC.
Reel/Frame 045190/0386 →
Continuity (3)
Provisional Application 62219451 · Sep 16, 2015
Provisional Application 62199810 · Jul 31, 2015
Related Publication 20190003549A1 · Jan 3, 2019