IP Library Granted Patent US 12,083,772
Granted Patent B2
US 12,083,772 · App. 17/776,480 · Granted Sep 10, 2024

Cover window assembly, related articles and methods

Inventors: Leopoldo Alejandro Carbajal (Newark, DE); Mark Allan Lamontia (Landenberg, PA); Mobin Yahyazadehfar (Garnet Valley, PA); Aref Samadidooki (Wilmington, DE)
Assignee: DUPONT ELECTRONICS, INC.
B32B27/08B32B7/022B32B7/12G02B1/14B32B2250/05B32B2250/24B32B2250/44B32B2255/102B32B2255/26B32B2274/00B32B2307/412B32B2307/51B32B2307/536B32B2307/54B32B2307/558B32B2307/734B32B2457/20G09F9/301
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Quick Facts
Patent No.
US 12,083,772
App. No.
17/776,480
Granted
Sep 10, 2024
Kind
B2
Abstract

The present invention is directed to a cover window assembly comprising a multi-layer films of polymeric and inorganic materials for a variety of articles, and the related articles and methods. The cover window assembly exhibits high resistance to strain and impact damage for the articles including display devices, particularly flexible display devices.

Claims (14)

1. A cover window assembly comprising a first energy-dispersing layer having an elastic modulus greater than 0.5 GPa and a yield stress less than 110 MPa; a first hard coat layer or a first oxide layer disposed directly on a top or a bottom surface of the first energy-dispersing layer; an adhesive layer directly disposed on the first energy-dispersing layer; a second hard coat layer or a second oxide layer disposed directly on the adhesive layer; and a structural layer having a yield stress higher than the yield stress of the first energy-dispersing layer and an elastic modulus of least 3 GPa, and disposed directly on the second hard coat layer or the second oxide layer.

2. A display device comprising an upper module comprising the cover window assembly of claim 1 , a display module and a lower module.

3. A cover window assembly comprising a first energy-dispersing layer having an elastic modulus greater than 0.5 GPa and a yield stress less than 110 MPa; a first hard coat layer or a first oxide layer disposed directly on a top or a bottom surface of the first energy-dispersing layer; a first structural layer having a yield stress higher than the yield stress of the first energy-dispersing layer and an elastic modulus of least 3 GPa, and disposed directly on the first hard coat layer or the first oxide layer; a second hard coat layer or a second oxide layer disposed directly on the first structural layer; an adhesive layer disposed directly on the first energy-dispersing layer; and a second energy-dispersing layer having an elastic modulus greater than 0.05 GPa and a yield stress less than 110 MPa, and disposed directly on the adhesive layer.

4. The cover window assembly of claim 3 , further comprising a second structural layer having a yield stress higher than the yield stress of the second energy-dispersing layer and an elastic modulus of least 3 GPa, and disposed between the adhesive layer and the second energy-dispersing layer.

5. The cover window assembly of claim 3 , further comprising a second structural layer having a yield stress higher than the yield stress of the second energy-dispersing layer and an elastic modulus of least 3 GPa, and disposed directly on the second energy-dispersing layer.

6. A display device comprising an upper module comprising the cover window assembly of claim 3 , a display module and a lower module.

7. A cover window assembly comprising a first energy-dispersing layer having an elastic modulus greater than 0.5 GPa and a yield stress less than 110 MPa; a first hard coat layer or a first oxide layer disposed directly on a top or a bottom surface of the first energy-dispersing layer; a first structural layer having a yield stress higher than the yield stress of the first energy-dispersing layer and an elastic modulus of least 3 GPa, and disposed directly on the first hard coat layer or the first oxide layer; a second hard coat layer or a second oxide layer disposed directly on the first structural layer; and a second structural layer having a yield stress higher than the yield stress of the first energy-dispersing layer and an elastic modulus of least 3 GPa, and disposed directly on the first energy-dispersing layer.

8. A display device comprising an upper module comprising the cover window assembly of claim 7 , a display module and a lower module.

9. A cover window assembly comprising a first energy-dispersing layer having an elastic modulus greater than 0.5 GPa and a yield stress less than 110 MPa; a first structural layer having a yield stress higher than the yield stress of the first energy-dispersing layer and an elastic modulus of least 3 GPa, and disposed directly on a top surface or a bottom surface of the first energy-dispersing layer; a first hard coat layer or a first oxide layer disposed directly on the first structural layer; a second hard coat layer or a second oxide layer disposed directly on the first energy-dispersing layer; and a second energy-dispersing layer having an elastic modulus greater than 0.05 GPa and a yield stress less than 110 MPa, and disposed directly on the second hard coat layer or the second oxide layer.

10. A display device comprising an upper module comprising the cover window assembly of claim 9 , a display module and a lower module.

11. A cover window assembly comprising a first energy-dispersing layer having an elastic modulus greater than 0.5 GPa and a yield stress less than 110 MPa; a first structural layer having a yield stress higher than the yield stress of the first energy-dispersing layer and an elastic modulus of least 3 GPa, and disposed directly on a top surface or a bottom surface of the first energy-dispersing layer; a first hard coat layer or a first oxide layer disposed directly on the first structural layer; and an elastomer layer having an elastic modulus of at least 1 MPa and a Poisson's ratio of at least 0.4, and disposed directly on the first energy-dispersing layer.

12. A display device comprising an upper module comprising the cover window assembly of claim 11 , a display module and a lower module.

13. A cover window assembly comprising: (a) an energy-dispersing layer having an elastic modulus greater than 0.5 GPa and a yield stress less than 110 MPa; (b) an adhesive layer disposed directly on the energy-dispersing layer; (c) a first hard coat layer or a first oxide layer disposed directly on the adhesive layer; (d) a structural layer disposed directly on the first hard coat layer or the first oxide layer; and (e) a second hard coat layer or a second oxide layer disposed directly on the structural layer.

14. A display device comprising an upper module comprising the cover window assembly of claim 13 , a display module and a lower module.

Assignments (3)
SECURITY INTEREST Recorded Nov 3, 2025
From: QNITY ELECTRONICS, INC.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 073515/0243 →
SECURITY INTEREST Recorded Nov 3, 2025
From: QNITY ELECTRONICS, INC.
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 073517/0298 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2022
From: CARBAJAL, LEOPOLDO ALEJANDRO; LAMONITA, MARK ALLAN; YAHYAZADEHFAR, MOBIN; SAMADIDOOKI, AREF
To: DUPONT ELECTRONICS, INC.
Reel/Frame 061484/0046 →