IP Library Granted Patent US 11,541,636
Granted Patent B2
US 11,541,636 · App. 16/468,034 · Granted Jan 3, 2023

Multilayer composite material and method for manufacturing

Inventors: Wesley Edward Hatcher (Echt, NL); Christopher Michael Adams (Echt, NL)
Assignee: DSM PROTECTIVE MATERIALS B.V.
B32B9/047A41D1/00A43B1/02A43B1/14B32B5/022B32B5/12B32B5/26B32B9/025B32B27/12F41H5/0478A41D2500/50B32B2260/023B32B2260/046B32B2262/0253B32B2307/516B32B2307/518B32B2307/52B32B2307/54B32B2307/724B32B2307/7265B32B2437/00B32B2571/02
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Quick Facts
Patent No.
US 11,541,636
App. No.
16/468,034
Granted
Jan 3, 2023
Kind
B2
Abstract

The invention relates to a structural multilayer composite comprising a layer of leather in contact with at least one monolayer comprising parallel aligned fibers and a matrix material. The composite may further comprise film layer(s) that may be breathable and/or waterproof. The structural multilayer composite material is suitable for use in clothing and outdoor gear and apparel.

Claims (27)

1. A composite structure having a surface which is at least 90% comprised of a structural multilayer composite, wherein the structural multilayer composite comprises:

a first monolayer which is comprised of (i) parallel ultrahigh molecular weight polyethylene (UHMWPE) fibers aligned in a first fiber direction and (ii) a first matrix material, and

a layer of leather having a thickness in a range of 0.5-6 mm in contact with the first monolayer, wherein

the fibers are present in the first monolayer in an amount to provide a fiber density of between 2 and 30 grams per square meter.

2. The composite structure of claim 1 , wherein the multilayer composite further comprises:

a second monolayer in contact with the first monolayer, wherein the second monolayer comprises parallel fibers aligned in a second fiber direction and a second matrix material, and wherein

the first monolayer is rotated relative to the second monolayer in the multilayer composite such that the second fiber direction is offset relative to the first fiber direction by up to 90 degrees.

3. The composite structure of claim 2 , wherein the multilayer composite further comprises:

additional monolayers of parallel fibers, wherein

each of the additional monolayers comprises parallel fibers and a further matrix material, and wherein

the additional monolayers are stacked and arranged in the multilayer composite such that one monolayer of the additional monolayers is in contact with the second monolayer and each successive monolayer of the additional monolayers is rotated relative to an adjacent monolayer such that fiber directions thereof are offset relative to one another.

4. The composite structure of claim 1 , further comprising a polymeric film in contact with a monolayer so that the polymeric film is present as an outer layer of the composite structure.

5. The composite structure of claim 4 , wherein the polymeric film is waterproof/breathable.

6. The composite structure of claim 1 , wherein the UHMWPE fibers have a strength which is at least 0.5 GPa.

7. The composite structure of claim 6 , wherein the strength of the UHMWPE fibers is at least 2.5 GPa.

8. The composite structure of claim 1 , wherein the UHMWPE fibers have an intrinsic viscosity of at least 5 dl/g.

9. The composite structure of claim 3 , wherein at least one of the first, second and further matrix materials has a stiffness of at least 3 MPa.

10. The composite structure of claim 9 , wherein at least one of the first, second and further matrix materials is at least one material selected from the group consisting of polyacrylates, polymers functionalized with acrylate groups, and polyurethanes.

11. The composite structure of claim 3 , wherein any one of the second and additional monolayers has a fiber density which is between 3 and 20 grams per square meter.

12. The composite structure according to claim 1 , wherein the UHMWPE fibers consist of ultrahigh molecular weight polyethylene filaments in which a single one of the filaments has a titer which is less than 10 denier.

13. The composite structure according to claim 1 , wherein the thickness of the leather layer is in the range of 0.7-2.8 mm.

14. A process for manufacturing the composite structure according to claim 1 , wherein the method comprises:

(i) providing an assembly comprised of the layer of leather, the first monolayer comprised of the parallel aligned UHMWPE fibers, the first matrix material, and optionally at least one polymeric film layer such that the assembly has two outer surfaces, one of the outer surfaces being the layer of leather; and thereafter

(ii) compressing at least 90% of the assembly at a pressure between 6 and 300 bar and temperature between 35 and 120° C. to thereby form the structural multilayer composite.

15. The process according to claim 14 , further comprising compressing less than 10% of the assembly at a pressure of less than 5 bar, thereby producing the composite structure having a surface which is at least 90% comprised of the structural multilayer composite and less than 10% comprised of a flexible composite.

16. The process according to claim 14 , wherein step (ii) comprises contacting at least one of the outer surfaces of the assembly with a cover during the compressing, and thereafter optionally removing the cover therefrom.

17. A product which comprises the composite structure according to claim 1 , wherein the product is selected from the group consisting of footwear, sports apparel, clothing, luggage, leather goods for animals, bags and luggage, hats, jackets, wallets, purses, bags, upholstery and gloves.

Assignments (3)
CHANGE OF NAME Recorded Mar 17, 2023
From: DSM PROTECTIVE MATERIALS B.V.
To: AVIENT PROTECTIVE MATERIALS B.V.
Reel/Frame 063115/0134 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2022
From: DSM IP ASSETS B.V.
To: DSM PROTECTIVE MATERIALS B.V.
Reel/Frame 061897/0987 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2019
From: HATCHER, WESLEY EDWARD; ADAMS, CHRISTOPHER MICHAEL
To: DSM IP ASSETS B.V.
Reel/Frame 050669/0807 →
Continuity (2)
Provisional Application 62440014 · Dec 29, 2016
Related Publication 20200009832A1 · Jan 9, 2020