IP Library Granted Patent US 11,978,370
Granted Patent B2
US 11,978,370 · App. 17/370,581 · Granted May 7, 2024

Cover window and flexible display device having the same

Inventors: Changwoo Chun (Cheonan-si, KR); Sejin Jang (Paju-si, KR); JooHye Park (Anyang-si, KR); Wansoo Lee (Goyang-si, KR)
Assignee: LG Display Co., Ltd.
G09F9/301C09J175/04H10K50/844G02F1/133305G02F1/133331G06F1/1641G06F1/1652H10K2102/331H10K2102/351
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Quick Facts
Patent No.
US 11,978,370
App. No.
17/370,581
Granted
May 7, 2024
Kind
B2
Abstract

A cover window includes a first layer having a first modulus, a second layer disposed on the first layer and having a second modulus smaller than the first modulus, and a third layer disposed on the second layer and having a third modulus equal to or larger than the first modulus, and in which the third layer includes a nanoparticle-polyurethane complex in which polyurethane is bonded with nanoparticles by a covalent bond. Therefore, the cover window of the present disclosure provides effects that the folding and rolling are possible with excellent surface characteristic and the restorability against the pressing and excellent optical property. A flexible display device may include the cover window.

Claims (53)

1. A cover window configured to be disposed on a display panel, comprising:

a first layer having a first modulus;

a second layer disposed on the first layer and having a second modulus smaller than the first modulus; and

a third layer disposed on the second layer and having a third modulus equal to or larger than the first modulus,

wherein the third layer includes a nanoparticle-polyurethane complex in which polyurethane is bonded with nanoparticles by a covalent bond,

wherein the first modulus, the second modulus, and the third modulus refers to a Young's modulus.

2. The cover window according to claim 1 , wherein the first modulus is 50 MPa to 100 MPa, the second modulus is 5 MPa to 20 MPa, and the third modulus is 100 MPa to 250 MPa.

3. The cover window according to claim 1 , wherein a thickness of the first layer is 150 μm to 250 μm, a thickness of the second layer is 30 μm to 55 μm, and a thickness of the third layer is 5 μm to 10 μm.

4. The cover window according to claim 1 , wherein a pencil hardness of the cover window is 1H or higher and a haze thereof is 5 or lower.

5. The cover window according to claim 1 , wherein the polyurethane of the nanoparticle-polyurethane complex is bonded with polyurethane of an adjacent nanoparticle-polyurethane complex to form a network structure.

6. A cover window, comprising:

a first layer having a first modulus;

a second layer disposed on the first layer and having a second modulus smaller than the first modulus; and

a third layer disposed on the second layer and having a third modulus equal to or larger than the first modulus,

wherein the third layer includes a nanoparticle-polyurethane complex in which polyurethane is bonded with nanoparticles by a covalent bond, and

wherein the first layer includes a first polyurethane having a weight average molecular weight of 65000 g/mol to 85000 g/mol, the second layer includes a second polyurethane having a weight average molecular weight of 90000 g/mol to 120000 g/mol, and the third layer includes a third polyurethane having a weight average molecular weight of 30000 g/mol to 60000 g/mol,

wherein the first modulus, the second modulus, and the third modulus refers to a Young's modulus.

7. The cover window according to claim 6 , wherein the first polyurethane is configured by a soft segment including polyols represented by Formula 1-1 and a hard segment including a diisocyanate compound, the second polyurethane is configured by a soft segment including polyols represented by Formula 1-2 and a hard segment including a diisocyanate compound, and the third polyurethane is configured by a soft segment including polyols represented by Formula 1-3 and a hard segment including a diisocyanate compound,

wherein in Formulae 1-1, 1-2, and 1-3, R1 is a chain or branched alkylene of 2 to 12 carbon atoms, R2 is an alkylene of 2 to 12 carbon atoms or a phenylene, R3 is an ether group of 2 to 12 carbon atoms, and a, b, and c are integers of 1 or larger, independently.

8. The cover window according to claim 7 , wherein the first polyurethane includes a repeating unit represented by Formula 2-1, the second polyurethane includes a repeating unit represented by Formula 2-2, and the third polyurethane includes a repeating unit represented by Formula 2-3,

wherein in the Formulae 2-1, 2-2, and 2-3, R4 is an aryl group of 6 to 20 carbon atoms, R5 is an alkylene of 4 to 20 carbon atoms or a cycloalkylene of 6 to 20 carbon atoms, x, y, and z are integers of 10 to 10000, independently.

9. The cover window according to claim 7 , wherein the third layer includes 1 part by weight to 4 parts by weight of the nanoparticles based on 100 parts by weight of the diisocyanate compound.

10. A cover window, comprising:

a first layer having a first modulus;

a second layer disposed on the first layer and having a second modulus smaller than the first modulus; and

a third layer disposed on the second layer and having a third modulus equal to or larger than the first modulus,

wherein the third layer includes a nanoparticle-polyurethane complex in which polyurethane is bonded with nanoparticles by a covalent bond, and

wherein the nanoparticle is silica sol or silica with a surface modified with a hydroxyl group,

wherein the first modulus, the second modulus, and the third modulus refers to a Young's modulus.

11. A flexible display device, comprising:

a display panel; and

a cover window disposed on the display panel, the cover window including a first layer disposed on one surface of the display panel and having a first modulus, a second layer disposed on the first layer and having a second modulus smaller than the first modulus, and a third layer disposed on the second layer and having a third modulus equal to or larger than the first modulus,

wherein the third layer includes a nanoparticle-polyurethane complex in which polyurethane is bonded with nanoparticles by a covalent bond,

wherein the first modulus, the second modulus, and the third modulus refers to a Young's modulus.

12. The flexible display device according to claim 11 , wherein the display panel includes a flexible substrate and an organic light emitting diode disposed on the flexible substrate.

13. The flexible display device according to claim 11 , wherein the first modulus is 50 MPa to 100 MPa, the second modulus is 5 MPa to 20 MPa, and the third modulus is 100 MPa to 250 MPa.

14. The flexible display device according to claim 11 , wherein the polyurethane of the nanoparticle-polyurethane complex is bonded with polyurethane of an adjacent nanoparticle-polyurethane complex to form a network structure.

15. The flexible display device according to claim 11 , wherein a width of the cover window is larger than a width of the display panel.

16. The flexible display device according to claim 15 , wherein the cover window encloses at least a part of a side surface and a rear surface of the display panel.

17. A flexible display device, comprising:

a display panel; and

a cover window disposed on the display panel, the cover window including a first layer disposed on one surface of the display panel and having a first modulus, a second layer disposed on the first layer and having a second modulus smaller than the first modulus, and a third layer disposed on the second layer and having a third modulus equal to or larger than the first modulus,

wherein the third layer includes a nanoparticle-polyurethane complex in which polyurethane is bonded with nanoparticles by a covalent bond, and

wherein the nanoparticle is silica sol or silica with a surface modified with a hydroxyl group,

wherein the first modulus, the second modulus, and the third modulus refers to a Young's modulus.

18. A flexible display device, comprising:

a display panel; and

a cover window disposed on the display panel, the cover window including a first layer disposed on one surface of the display panel and having a first modulus, a second layer disposed on the first layer and having a second modulus smaller than the first modulus, and a third layer disposed on the second layer and having a third modulus equal to or larger than the first modulus,

wherein the third layer includes a nanoparticle-polyurethane complex in which polyurethane is bonded with nanoparticles by a covalent bond, and

wherein the first layer includes a first polyurethane including a repeating unit represented by Formula 2-1, the second layer includes a second polyurethane including a repeating unit represented by Formula 2-2, and the third layer includes a third polyurethane including a repeating unit represented by Formula 2-3,

wherein in Formulae 2-1, 2-2, and 2-3, R1 is a chain or branched alkylene of 2 to 12 carbon atoms, R2 is an alkylene of 2 to 12 carbon atoms or a phenylene, R3 is an ether group of 2 to 12 carbon atoms, R4 is an aryl group of 6 to 20 carbon atoms, R5 is an alkylene of 4 to 20 carbon atoms or a cycloalkylene of 6 to 20 carbon atoms, x, y, and z are integers of 10 to 10000, independently, and a, b, and c are integers of 1 or larger, independently,

wherein the first modulus, the second modulus, and the third modulus refers to a Young's modulus.

19. The flexible display device according to claim 18 , wherein the third layer includes 1 part by weight to 4 parts by weight of the nanoparticles based on 100 parts by weight of a diisocyanate compound.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2021
From: CHUN, CHANGWOO; JANG, SEJIN; PARK, JOOHYE; LEE, WANSOO
To: LG DISPLAY CO., LTD.
Reel/Frame 056796/0396 →
Priority Claims (1)
KR 10-2020-0086879 · Jul 14, 2020 · national
Continuity (1)
Related Publication 20220020298A1 · Jan 20, 2022