IP Library Granted Patent US 11,866,559
Granted Patent B2
US 11,866,559 · App. 17/147,217 · Granted Jan 9, 2024

Fast fabrication of fiber reinforced polymers using solid epoxy powder containing an initiator

Inventors: Junhua Wei (Palo Alto, CA); Gabriel Iftime (Newark, CA); Michael Benedict (Palo Alto, CA); Mahati Chintapalli (Moutain View, CA)
Assignee: XEROX CORPORATION
C08J5/243C08K3/042C08K3/346C08K3/36C08L101/00C08J2363/00
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Quick Facts
Patent No.
US 11,866,559
App. No.
17/147,217
Granted
Jan 9, 2024
Kind
B2
Abstract

A method of manufacturing includes producing a powder resin comprising a polymer precursor and a thermal initiator, packing a fiber structure with the powder resin, resulting in a resin-packed structure, and heating the resin-packed structure to a curing temperature high enough to melt and cure the resin-packed structure to form a final structure.

Claims (21)

1. A method of manufacturing fiber reinforced polymers comprising:

producing a powder resin comprising a polymer precursor and a thermal initiator, wherein the powder resin is produced by mixing an epoxy monomer as the polymer precursor in a concentration range of 80-99.99 wt % and thermal initiator in a concentration range of 0.001-20 wt %;

packing a fiber structure with the powder resin resulting in a resin-packed structure by one or more of repeatedly spraying the powder resin onto a layer of the fiber structure and adding layers, densifying the powder resin, electrodepositing the powder resin, and rolling the powder resin over the fiber structure; and

heating the resin-packed structure to a curing temperature high enough to melt and cure the resin-packed structure to form a final structure.

2. The method as claimed in claim 1 , wherein producing a powder resin comprises:

mixing the polymer precursor and the thermal initiator in a solvent to form a mixture;

removing the solvent and drying the mixture to form a solid;

grinding the solid to produce powder resin.

3. The method as claimed in claim 1 , further comprising adding protective layers to the fiber structure.

4. The method as claimed in claim 1 , wherein the fiber structure comprises a pre-formed fiber structure.

5. The method as claimed in claim 1 , wherein the fiber structure comprises at least one mat and the method further comprises shaping the resin-packed structure either prior to or during the heating.

6. The method as claimed in claim 5 , wherein shaping the resin-packed structure comprises vacuum and autoclave compressing the resin-packed structure.

7. The method as claimed in claim 1 , wherein heating the resin-packed structure comprises heating the resin-packed structure in a chamber at a temperature of at least 60° C.

8. The method as claimed in claim 1 , wherein producing the resin powder comprises producing one selected from the group consisting of: solid epoxy with solid amine and solid epoxy with anhydride.

9. The method as claimed in claim 1 , wherein producing the resin powder comprises producing one selected from the group consisting of: thermoplastic polyurethane powder, polyether powder, vinyl ester powder, and nylon powder.

10. The method as claimed in claim 1 , wherein the powder resin is comprised of particles having a size in the range of 1 μm to 500μ.

11. The method as claimed in claim 1 , wherein the powder resin comprises two components in a combination, wherein the combination comprises one of: a solid epoxy with one of solid amine or anhydride, a powder resin containing both epoxy and one of either amine or anhydride, or two powder resins wherein one contains epoxy and one contains one of either amine or anhydride but mixed for packing.

12. The method as claimed in claim 11 , wherein the melting point of a first of the two components is lower than the melting point of a second of the two components is such that the first component wets and infiltrates the fiber structure before the second component melts to start the curing.

13. The method as claimed in claim 1 , wherein producing the resin powder comprises adding particle fillers to the polymer precursor and the thermal initiator.

14. The method as claimed in claim 13 , wherein the at least one particle filler comprises at least one selected from the group consisting of: clay, graphene, and fumed silica.

15. The method as claimed in claim 1 , wherein the fiber structure has a shape that is one of a single fiber, a tow of fiber, and a fabric having a pattern of at least one of a unidirectional pattern, a 1×1 pattern, a 2×2 twill weave pattern, a 4 Harness-Satin pattern, a 5 Harness-Satin pattern, an 8 Harness-Satin pattern, and a 4×4 twill weave pattern.

Assignments (7)
SECOND LIEN NOTES PATENT SECURITY AGREEMENT Recorded Jul 2, 2025
From: XEROX CORPORATION
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 071785/0550 →
FIRST LIEN NOTES PATENT SECURITY AGREEMENT Recorded Apr 11, 2025
From: XEROX CORPORATION
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 070824/0001 →
SECURITY INTEREST Recorded Feb 13, 2024
From: XEROX CORPORATION
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 066741/0001 →
SECURITY INTEREST Recorded Nov 20, 2023
From: XEROX CORPORATION
To: JEFFERIES FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 065628/0019 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVAL OF US PATENTS 9356603, 10026651, 10626048 AND INCLUSION OF US PATENT 7167871 PREVIOUSLY RECORDED ON REEL 064038 FRAME 0001. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 28, 2023
From: PALO ALTO RESEARCH CENTER INCORPORATED
To: XEROX CORPORATION
Reel/Frame 064161/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2023
From: PALO ALTO RESEARCH CENTER INCORPORATED
To: XEROX CORPORATION
Reel/Frame 064038/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2021
From: WEI, JUNHUA; IFTIME, GABRIEL; BENEDICT, MICHAEL; CHINTAPALLI, MAHATI
To: PALO ALTO RESEARCH CENTER INCORPORATED
Reel/Frame 054895/0686 →
Continuity (1)
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