IP Library › Granted Patent US 8,426,016
Granted Patent B2
US 8,426,016 · App. 12/657,649 · Granted Apr 23, 2013

Silicone-impregnated foam product with fillers and method for producing same

Inventor: Charlie Hubbs (Dalton, GA)
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Quick Facts
Patent No.
US 8,426,016
App. No.
12/657,649
Granted
Apr 23, 2013
Kind
B2
Abstract

A resilient structure comprising a carrier layer of open-cell, resilient urethane foam material. The foam material is substantially completely and uniformly impregnated with an impregnant comprising silicone. The impregnant is cured after said impregnation to produce a foamed, open cell, resilient structure wherein the open cells thereof partially comprise the carrier layer of urethane foam material and the silicone includes a filler. A method for producing a resilient structure comprising applying silicone onto a carrier layer of open-cell, resilient urethane foam material, substantially completely and uniformly impregnating the carrier layer with the silicone, and curing the silicone to produce a foamed open-cell, resilient structure wherein the open cells thereof partially comprise the foam material, wherein the structure exhibits properties of the silicone, and wherein the silicone includes a filler.

Claims (22)

1. A resilient composite structure comprising:

a carrier layer of reticulated, open-cell, resilient polyurethane foam material, said resilient polyurethane foam material being substantially completely and uniformly impregnated with an impregnant comprising a curable silicone polymer and a filler; the impregnant being cured into a substantially elastomeric solid after said impregnation to produce a highly-durable, foamed, open-cell resilient composite structure wherein the impregnant partially coats the cell walls of the open cells of said carrier layer of resilient polyurethane foam material;

wherein said impregnant has a viscosity in the range of about 10,000 cP/mPa's to about 12,000 cP/mPa's, being evenly distributed throughout the polyurethane foam material; and

wherein said structure, after said silicone polymer is cured, is of a thickness that is less than an initial thickness of said carrier layer.

2. The resilient composite structure as defined in claim 1 wherein said carrier layer has a thickness in the range of about 80 to 650 mils.

3. The resilient composite structure as defined in claim 1 wherein said filler is an anti-microbial filler.

4. The resilient composite structure as defined in claim 1 wherein said filler is a light weight filler.

5. The resilient composite structure as defined in claim 1 wherein said filler is a flame retardant filler.

6. The resilient composite structure as defined in claim 1 further comprising a substrate securely adhered to said impregnated foam material, said substrate extending completely across at least one surface thereof.

7. The resilient composite structure as defined in claim 6 wherein said substrate is adhered to said impregnated foam material by an adhesive, said adhesive being a component independent of said impregnant.

8. The resilient composite structure as defined in claim 1 wherein said resilient composite structure has a thickness in a range between about 2 mm and about 6 inches.

9. A method for producing a resilient composite structure comprising:

applying, onto a carrier layer of reticulated, open-cell, resilient polyurethane foam material, an impregnant and substantially completely and uniformly impregnating said carrier layer with said impregnant which includes a curable silicone polymer and a filler;

curing said silicone polymer to produce a foamed open-cell, resilient polymer composite structure wherein the silicone polymer partially coats the cell walls of the open cells of said carrier layer of resilient polyurethane foam material, the open cells thereof partially comprise said foam material, and wherein said impregnant has a viscosity in the range of about 10,000 cP/mPa·s to about 12,000 cP/mPa·s, being distributed throughout the polyurethane foam material; and

wherein said composite structure, after said silicone polymer is cured, is of a thickness that is less than an initial thickness of said carrier layer.

10. The method as defined in claim 9 wherein said carrier layer has a thickness in the range of about 80 to 650 mils.

11. The method as defined in claim 9 wherein said filler is an anti-microbial filler.

12. The method as defined in claim 9 wherein said filler is a light weight filler.

13. The method as defined in claim 9 wherein said filler is a flame retardant filler.

14. The method as defined in claim 9 further comprising a substrate securely adhered to said impregnated foam material, said substrate extending completely across at least one surface thereof.

15. The method as defined in claim 14 wherein said substrate is adhered to said impregnated foam material by an adhesive, said adhesive being a component independent of said impregnant.

16. The method as defined in claim 9 wherein said resilient composite structure has a thickness in the range of 2 mm to 6 inches.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2024
From: DEVINE INNOVATIONS, INC.; CUSHION BY DESIGN, INC.
To: KUSHION KOMPANY L.L.C.
Reel/Frame 068785/0309 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 16, 2024
From: HUBBS, ZACHARY
To: DEVINE INNOVATIONS, INC.
Reel/Frame 067998/0206 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2013
From: HUBBS, CHARLIE
To: DEVINE INNOVATIONS, INC.
Reel/Frame 030787/0361 →
Continuity (5)
Continuation In Part 12319986 · Jan 14, 2009
Continuation In Part PCTUS2006019604 · May 19, 2006
Provisional Application 61205827 · Jan 23, 2009
Provisional Application 60682824 · May 20, 2005
Related Publication 20110111196A1 · May 12, 2011