IP Library Granted Patent US 12,226,971
Granted Patent B2
US 12,226,971 · App. 17/198,806 · Granted Feb 18, 2025

Biodegradable, industrially compostable, and recyclable injection molded microcellular flexible foams

Inventor: Robert Falken (Solana Beach, CA)
Assignee: O2 Partners, LLC
B29D35/0009A43B17/14A43D29/00B29D35/122B32B5/18B32B5/245B32B7/022C08F290/065B29K2077/00B32B2266/0257B32B2307/7163B32B2307/72B32B2437/02
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Quick Facts
Patent No.
US 12,226,971
App. No.
17/198,806
Granted
Feb 18, 2025
Kind
B2
Abstract

This document discloses a process for manufacturing recyclable injection molded microcellular foams for use in, footwear components, seating components, protective gear components, and watersport accessories. The process includes the steps of providing a thermoplastic polymer which comprises at least one monomer derived from depolymerized post-consumer plastic, inserting a fluid into a barrel of a molding apparatus. The fluid is introduced under temperature and pressure conditions to produce a super critical fluid. The process further includes mixing the thermoplastic polymer and super critical fluid so as to create a single phase solution, and injecting the single phase solution into a mold of an injection molding machine under gas counter pressure. The process further includes foaming the single phase solution by controlling the head and temperature conditions within the mold.

Claims (26)

1. A recyclable shoe-insole comprising a laminate material, wherein the laminate material consists of:

a recyclable foam layer consisting of a polymer matrix and an inert physical foaming agent uniformly dispersed throughout the polymer matrix, the polymer matrix comprising a non-crosslinked thermoplastic polymer selected from a polyamide polymer or a polyamide copolymer, wherein the non-crosslinked thermoplastic polymer comprises caprolactam monomers, and wherein the recyclable foam layer includes a smooth outer surface; and

a fabric layer disposed above and directly coupled to a top surface of the recyclable foam layer.

2. The recyclable shoe-insole of claim 1 further comprising:

a support layer disposed at a heel area of the recyclable shoe insole, the support layer comprised of the same recyclable foam as the recyclable foam layer.

3. The recyclable shoe-insole of claim 2 , wherein the support layer has a higher density than each of the recyclable foam layer, and the fabric layer.

4. The recyclable shoe-insole of claim 2 , wherein the support layer is formed of a compressed foam material having a density greater than a density of the recyclable foam layer.

5. The recyclable shoe-insole of claim 2 , wherein the support layer has a density between about 22 lbs. per cubic ft. to 23 lbs. per cubic ft.

6. The recyclable shoe-insole of claim 1 , wherein the physical foaming agent forms a plurality of inert gas bubbles within the recyclable foam layer, wherein the gas bubbles do not break through the smooth outer surface of the recyclable foam layer.

7. The recyclable shoe-insole of claim 1 , wherein the recyclable foam layer, and the fabric layer are integrally formed.

8. The recyclable shoe-insole of claim 1 , wherein the recyclable foam layer has a density between about 2 lbs. per cubic ft. to about 10 lbs. per cubic ft.

9. The recyclable shoe-insole of claim 1 , wherein the physical foaming agent is nitrogen or carbon dioxide.

10. The recyclable shoe-insole of claim 1 , wherein at least 40% of the caprolactam monomers of the non-crosslinked thermoplastic polymer are derived from a depolymerized recycled feedstock plastic.

11. The recyclable shoe-insole of claim 1 , wherein at least 60% of the caprolactam monomers of the non-crosslinked thermoplastic polymer are derived from a depolymerized recycled feedstock plastic.

12. The recyclable shoe-insole of claim 1 , wherein at least 90% of the caprolactam monomers of the non-crosslinked thermoplastic polymer are derived from a depolymerized recycled feedstock plastic.

13. The recyclable shoe-insole of claim 1 further comprising:

a base layer comprised of a material having a density greater than a density of the recyclable foam layer, the base layer directly coupled to a bottom surface of the recyclable foam layer.

14. The recyclable shoe-insole of claim 13 , wherein the base layer has a density between about 2 lbs. per cubic ft. to about 10 lbs. per cubic ft.

15. The recyclable shoe-insole of claim 1 , wherein the polyamide polymer or polyamide copolymer comprises polyamide 6.

16. The recyclable shoe-insole of claim 1 , wherein the polyamide polymer or polyamide copolymer is a polyamide block copolymer.

17. The recyclable shoe-insole of claim 16 , wherein the polyamide block copolymer is a polyether block amide.

18. A recyclable shoe-insole consisting of:

a recyclable foam layer consisting of a polymer matrix and an inert physical foaming agent uniformly dispersed throughout the polymer matrix, the polymer matrix comprising a non-crosslinked thermoplastic polymer selected from a polyamide polymer or a polyamide copolymer, wherein the non-crosslinked thermoplastic polymer can be depolymerized into caprolactam monomers; and

a fabric layer disposed above and directly coupled to a top surface of the recyclable foam layer.

19. The recyclable shoe-insole of claim 1 , wherein the fabric layer is positioned at and directly contacts the top surface of the recyclable foam layer.

20. The recyclable shoe-insole of claim 1 , wherein the fabric layer is coupled to the top surface of the recyclable foam layer via flame lamination.

Assignments (3)
RELEASE OF SECURITY INTEREST AT R/F 65080/0515 Recorded Oct 30, 2025
From: ING CAPITAL LLC
To: O2 PARTNERS, LLC
Reel/Frame 074291/0303 →
SECURITY INTEREST Recorded Sep 29, 2023
From: O2 PARTNERS, LLC
To: ING CAPITAL LLC
Reel/Frame 065080/0515 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2021
From: FALKEN, ROBERT
To: O2 PARTNERS, LLC
Reel/Frame 055729/0764 →
Continuity (6)
Continuation 17075789 · Oct 21, 2020
Continuation 16872656 · May 12, 2020
Continuation In Part 16418968 · May 21, 2019
Provisional Application 62853805 · May 29, 2019
Provisional Application 62674544 · May 21, 2018
Related Publication 20210229385A1 · Jul 29, 2021
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Cited By (1)
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