IP Library › Granted Patent US 10,065,880
Granted Patent B2
US 10,065,880 · App. 15/799,068 · Granted Sep 4, 2018

Lithium containing glasses

Inventors: Timothy Michael Gross (Corning, NY); Xiaoju Guo (Painted Post, NY); Charlene Marie Smith (Corning, NY)
Assignee: CORNING INCORPORATED
C03C3/091C03C3/097C03C21/002H05K5/0017H05K5/03
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Quick Facts
Patent No.
US 10,065,880
App. No.
15/799,068
Granted
Sep 4, 2018
Kind
B2
Abstract

A glass article including, on an oxide basis, from 60 mol % to 74 mol % SiO 2 , from 7 mol % to 18 mol % Al 2 O 3 , from 3 mol % to 16 mol % B 2 O 3 , from 0 mol % to 6 mol % Na 2 O, from 0 mol % to 5 mol % P 2 O 5 , from 5 mol % to 11 mol % Li 2 O, less than or equal to 0.2 mol % SnO 2 , and from 0.5 mol % to 6.5 mol % divalent cation oxides. The glass article has a molar ratio of Al 2 O 3 :(R 2 O+RO) greater than or equal to 0.9, where R 2 O is a sum of alkali metal oxides in mol % and RO is a sum of divalent cation oxides in mol %.

Claims (55)

1. A glass article comprising, on an oxide basis:

from greater than or equal to 60 mol % to less than or equal to 74 mol % SiO 2 ;

from greater than or equal to 7 mol % to less than or equal to 18 mol % Al 2 O 3 ;

from greater than or equal to 3 mol % to less than or equal to 16 mol % B 2 O 3 ;

from greater than 0 mol % to less than or equal to 6 mol % Na 2 O;

from greater than or equal to 0 mol % to less than or equal to 5 mol % P 2 O 5 ;

from greater than or equal to 5 mol % to less than or equal to 11 mol % Li 2 O;

less than or equal to 0.2 mol % SnO 2 , and

from greater than or equal to 0.5 mol % to less than or equal to 6.5 mol % divalent cation oxides, wherein

a molar ratio of Al 2 O 3 :(R 2 O+RO) is greater than or equal to 0.9, where R 2 O is a sum of alkali metal oxides in mol % and RO is a sum of divalent cation oxides in mol %.

2. The glass article of claim 1 , wherein the glass article comprises from greater than or equal to 0 mol % to less than or equal to 6.5 mol % MgO.

3. The glass article of claim 1 , wherein the glass article comprises from greater than or equal to 0 mol % to less than or equal to 5 mol % CaO.

4. The glass article of claim 1 , wherein the glass article comprises from greater than or equal to 0.5 mol % to less than or equal to 2 mol % SrO.

5. The glass article of claim 1 , wherein the glass article comprises from greater than or equal to 0 mol % to less than or equal to 2 mol % ZnO.

6. The glass article of claim 1 , wherein the glass article comprises a molar ratio of Li 2 O:R 2 O greater than or equal to 0.4, where R 2 O is a sum of alkali metal oxides in mol %.

7. The glass article of claim 1 , wherein the glass article comprises greater than or equal to 80 mol % Al 2 O 3 +SiO 2 +B 2 O 3 +P 2 O 5 .

8. The glass article of claim 1 , wherein the glass article has a liquidus viscosity of less than or equal to 300 kP.

9. The glass article of claim 1 , wherein the glass article has a Knoop Scratch Lateral Cracking Threshold of greater than or equal to 5 N to less than or equal to 24 N.

10. The glass article of claim 1 , wherein the glass article has an Indentation Fracture Threshold of greater than or equal to 15 kgf.

11. The glass article of claim 1 , wherein the glass article is strengthened by an ion exchange process, such that a compressive stress layer is formed on at least one surface of the glass article.

12. The glass article of claim 11 , wherein a depth of compression is greater than or equal to 0.15 t, where t is a thickness of the glass article.

13. The glass article of claim 11 , wherein the glass article has a central tension from greater than or equal to 30 MPa to less than or equal to 150 MPa.

14. The glass article of claim 11 , wherein the glass article is strengthened by an ion exchange process that adds potassium ions to the glass article and a potassium depth of layer (DOL) is from greater than or equal to 5 μm to less than or equal to 30 μm.

15. A consumer electronic product, comprising:

a housing having a front surface, a back surface, and side surfaces;

electrical components provided at least partially within the housing, the electrical components including at least a controller, a memory, and a display, the display being provided at or adjacent to the front surface of the housing; and

and a cover substrate disposed over the display,

wherein at least one of a portion of the housing or the cover substrate comprises the glass article of claim 1 .

16. A glass article comprising, on an oxide basis:

from greater than or equal to 60 mol % to less than or equal to 66 mol % SiO 2 ;

from greater than or equal to 11.5 mol % to less than or equal to 18 mol % Al 2 O 3 ;

from greater than or equal to 3 mol % to less than or equal to 8 mol % B 2 O 3 ;

from greater than or equal to 2 mol % to less than or equal to 6 mol % Na 2 O;

from greater than or equal to 0 mol % to less than or equal to 5 mol % P 2 O 5 ;

from greater than or equal to 5 mol % to less than or equal to 11 mol % Li 2 O; and

from greater than or equal to 0.5 mol % to less than or equal to 6.5 mol % divalent cation oxides,

wherein a molar ratio of Al 2 O 3 :(R 2 O+RO) is greater than or equal to 0.9, where R 2 O is a sum of alkali metal oxides in mol % and RO is a sum of divalent cation oxides in mol %.

17. The glass article of claim 16 , wherein the glass article comprises from greater than or equal to 0 mol % to less than or equal to 6.5 mol % MgO.

18. The glass article of claim 16 , wherein the glass article comprises from greater than or equal to 0 mol % to less than or equal to 5 mol % CaO.

19. The glass article of claim 16 , wherein the glass article comprises from greater than or equal to 0.5 mol % to less than or equal to 2 mol % SrO.

20. The glass article of claim 16 , wherein the glass article comprises from greater than or equal to 0 mol % to less than or equal to 2 mol % ZnO.

21. The glass article of claim 16 , wherein the glass article comprises a molar ratio of Li 2 O:R 2 O greater than or equal to 0.4, where R 2 O is a sum of alkali metal oxides in mol %.

22. The glass article of claim 16 , wherein the glass article comprises greater than or equal to 80 mol % Al 2 O 3 +SiO 2 +B 2 O 3 +P 2 O 5 .

23. The glass article of claim 16 , wherein the glass article has a liquidus viscosity of less than or equal to 300 kP.

24. The glass article of claim 16 , wherein the glass article has a Knoop Scratch Lateral Cracking Threshold of greater than or equal to 5 N to less than or equal to 24 N.

25. The glass article of any claim 16 , wherein the glass article has an Indentation Fracture Threshold of greater than or equal to 15 kgf.

26. The glass article of claim 16 , wherein the glass article is strengthened by an ion exchange process, such that a compressive stress layer is formed on at least one surface of the glass article.

27. The glass article of claim 26 , wherein a depth of compression is greater than or equal to 0.15 t, where t is a thickness of the glass article.

28. The glass article of claim 26 , wherein the glass article has a central tension from greater than or equal to 70 MPa to less than or equal to 150 MPa.

29. The glass article of claim 26 , wherein the glass article is strengthened by an ion exchange process that adds potassium ions to the glass article and a potassium depth of layer (DOL) is from greater than or equal to 5 μm to less than or equal to 30 μm.

30. A consumer electronic product, comprising:

a housing having a front surface, a back surface, and side surfaces;

electrical components provided at least partially within the housing, the electrical components including at least a controller, a memory, and a display, the display being provided at or adjacent to the front surface of the housing; and

and a cover substrate disposed over the display,

wherein at least one of a portion of the housing or the cover substrate comprises the glass article of claim 16 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2018
From: GROSS, TIMOTHY MICHAEL; GUO, XIAOJU; SMITH, CHARLENE MARIE
To: CORNING INCORPORATED
Reel/Frame 046248/0290 →
Continuity (4)
Provisional Application 62418367 · Nov 7, 2016
Provisional Application 62452004 · Jan 30, 2017
Provisional Application 62565190 · Sep 29, 2017
Related Publication 20180127303A1 · May 10, 2018
Cited By (3)
US 12,291,484 US 12,415,746 US 12,583,783