IP Library Granted Patent US 11,987,728
Granted Patent B2
US 11,987,728 · App. 17/987,165 · Granted May 21, 2024

Starch and carboxylic acid binder compositions and articles made therewith

Inventors: Kiarash Alavi (Littleton, CO); Uranchimeg Lester (Littleton, CO); Ameya Natu (Littleton, CO); James Cottier (Red Bluff, CA); Jawed Asrar (Englewood, CO); Philip Francis Miele (Highlands Ranch, CO)
Assignee: Johns Manville
C09J103/02C09J4/00C09J4/06C09J5/06C09J131/06C09J133/06C09J199/00D04H1/4218D04H1/587D04H1/64E04B1/78E04B1/80C09J2400/26C09J2471/00D04H1/4209
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Quick Facts
Patent No.
US 11,987,728
App. No.
17/987,165
Granted
May 21, 2024
Kind
B2
Abstract

Fiber-containing composites are described that include woven or non-woven fibers, and a binder that holds the fibers together. The binder may include the reaction product of a starch and a polycarboxylic acid. The starch has a weight average molecular weight that ranges from 1×10 6 Daltons to 10×10 6 Daltons. The fiber-containing composite has an unaged tensile strength of greater than 4.0 and an aged tensile strength greater than 3.0. Also described are methods of making the fiber-containing composites. The methods may include applying a binder composition to fibers to form coated fibers, measuring a moisture content of the coated fibers, and curing the coated fibers in a curing oven to form the fiber-containing composite. The binder composition may include a starch having a weight average molecular weight that ranges from 1×10 6 Daltons to 10×10 6 Daltons, and a polycarboxylic acid.

Claims (25)

1. A fiber-containing composite, comprising;

fibers;

a binder applied to the fibers;

wherein the binder comprises a reaction product of:

at least one starch having a weight average molecular weight from 1×10 6 Daltons to 1×10 7 Daltons, and

at least one polycarboxylic acid; and

wherein the binder comprises from 85 wt. % to 97 wt. % water on dilution prior to application to said fibers.

2. The fiber-containing composite of claim 1 , wherein the ramp moisture of the binder is from 3 wt. % to 5 wt. %.

3. The fiber-containing composite of claim 1 , wherein the unaged tensile strength of the fiber-containing composite is greater than 4.0 MPa.

4. The fiber-containing composite of claim 1 , wherein the aged tensile strength of the fiber-containing composite is greater than 3.0 MPa.

5. The fiber-containing composite of claim 1 , wherein the starch and the polycarboxlic acid do not react with transition metals to form precipitates.

6. The fiber-containing composite of claim 1 , wherein the starch is made from a single carbohydrate unit.

7. The fiber-containing composite of claim 1 , wherein the starch is made from two or more types of carbohydrate units.

8. A fiber-containing composite, comprising;

fibers;

a binder applied to the fibers;

wherein the binder comprises a reaction product of:

at least one starch having a weight average molecular weight from 1×10 6 Daltons to 1×10 7 Daltons, and

at least one polycarboxylic acid; and

wherein the starch is made from two or more types of carbohydrate units.

9. The fiber-containing composite of claim 8 , wherein the ramp moisture of the binder is from 3 wt. % to 5 wt. %.

10. The fiber-containing composite of claim 8 , wherein the unaged tensile strength of the fiber-containing composite is greater than 4.0 MPa.

11. The fiber-containing composite of claim 8 , wherein the aged tensile strength of the fiber-containing composite is greater than 3.0 MPa.

12. The fiber-containing composite of claim 8 , wherein the binder comprises from 85 wt. % to 97 wt. % water on dilution prior to application to said fibers.

13. The fiber-containing composite of claim 8 , wherein the starch and the polycarboxlic acid do not react with transition metals to form precipitates.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2023
From: ALAVI, KIARASH; LESTER, URANCHIMEG; NATU, AMEYA; COTTIER, JAMES; ASRAR, JAWED; MIELE, PHILIP FRANCIS
To: JOHNS MANVILLE
Reel/Frame 064449/0971 →
Continuity (3)
Continuation 17172309 · Feb 10, 2021
Continuation 16012220 · Jun 19, 2018
Related Publication 20230080427A1 · Mar 16, 2023