Ion exchangeable glass with high crack initiation threshold

US9682885B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9682885-B2
Application numberUS-201615132696-A
CountryUS
Kind codeB2
Filing dateApr 19, 2016
Priority dateNov 16, 2011
Publication dateJun 20, 2017
Grant dateJun 20, 2017

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Abstract

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Alkali aluminosilicate glasses that are resistant to damage due to sharp impact and capable of fast ion exchange are provided. The glasses comprise at least 4 mol % P 2 O 5 and, when ion exchanged, have a Vickers indentation crack initiation load of at least about 7 kgf.

First claim

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The invention claimed is: 1. An alkali aluminosilicate glass comprising MgO, from about 40 mol % to about 70 mol % SiO 2 ; from about 11 mol % to about 25 mol % Al 2 O 3 ; from about 4 mol % to about 15 mol % P 2 O 5 ; from about 13 mol % to about 20 mol % Na 2 O, and less than 4 mol % B 2 O 3 , wherein: i. the alkali aluminosilicate glass is lithium-free; and ii. 1.3<[(P 2 O 5 +R 2 O)/M 2 O 3 ]≦2.3, where M 2 O 3 =Al 2 O 3 +B 2 O 3 and R 2 O is the sum of monovalent cation oxides present in the alkali aluminosilicate glass. 2. The alkali aluminosilicate glass of claim 1 , wherein the glass satisfies: 1.5<[(P 2 O 5 +R 2 O)/M 2 O 3 ]≦2.0. 3. The alkali aluminosilicate glass of claim 1 , further comprising K 2 O, wherein an amount of K 2 O is less than 1 mol %. 4. The alkali aluminosilicate glass of claim 1 , wherein the alkali aluminosilicate glass comprises 0 mol % K 2 O. 5. The alkali aluminosilicate glass of claim 1 , comprising 0 mol % B 2 O 3 . 6. The alkali aluminosilicate glass of claim 1 , wherein the monovalent cation oxides are selected from the group consisting of Na 2 O, K 2 O, Rb 2 O, and Cs 2 O. 7. The alkali aluminosilicate glass of claim 1 comprises B 2 O 3 . 8. The alkali aluminosilicate glass of claim 7 , comprising less than 1 mol % B 2 O 3 . 9. The alkali aluminosilicate glass of claim 1 , wherein the alkali aluminosilicate glass comprises from about 50 mol % to about 65 mol % SiO 2 ; from about 14 mol % to about 20 mol % Al 2 O 3 ; from about 4 mol % to about 10 mol % P 2 O 5 ; and from about 14 mol % to about 20 mol % Na 2 O. 10. The alkali aluminosilicate glass of claim 9 , wherein the alkali aluminosilicate glass further comprises K 2 O, wherein an amount of K 2 O less than 1 mol % K 2 O. 11. The alkali aluminosilicate glass of claim 9 , wherein the alkali aluminosilicate glass comprises 0 mol % K 2 O. 12. The alkali aluminosilicate glass of claim 9 , wherein the alkali aluminosilicate glass comprises less than 1 mol % B 2 O 3 . 13. The alkali aluminosilicate glass of claim 12 , wherein the alkali aluminosilicate glass comprises 0 mol % B 2 O 3 . 14. The alkali aluminosilicate glass of claim 1 , wherein the alkali aluminosilicate glass has a potassium/sodium interdiffusion coefficient of at least about 2.4×10 −10 cm 2 /s at 410° C. 15. The alkali aluminosilicate glass of claim 14 , wherein the potassium/sodium interdiffusion coefficient is in a range from about 2.4×10 −10 cm 2 /s up to about 1.5×10 −9 = 2 /s at 410° C. 16. An alkali aluminosilicate glass comprising MgO, from about 40 mol % to about 70 mol % SiO 2 ; from about 11 mol % to about 25 mol % Al 2 O 3 ; from about 4 mol % to about 15 mol % P 2 O 5 ; from about 13 mol % to about 20 mol % Na 2 O, and less than 4 mol % B 2 O 3 wherein: i. the alkali aluminosilicate glass is ion exchanged to a depth of layer of at least about 10 μm; ii. the alkali aluminosilicate glass is lithium-free; and iii. 1.3<[(P 2 O 5 +R 2 O)/M 2 O 3 ]≦2.3, where M 2 O 3 =Al 2 O 3 +B 2 O 3 and R 2 O is the sum of monovalent cation oxides present in the alkali aluminosilicate glass. 17. The alkali aluminosilicate glass of claim 16 , wherein the alkali aluminosilicate glass comprises from about 50 mol % to about 65 mol % SiO 2 ; from about 14 mol % to about 20 mol % Al 2 O 3 ; from about 4 mol % to about 10 mol % P 2 O 5 ; and from about 14 mol % to about 20 mol % Na 2 O. 18. The alkali aluminosilicate glass of claim 16 , wherein the glass satisfies: 1.5<[(P 2 O 5 +R 2 O)/M 2 O 3 ]≦2.0. 19. The alkali aluminosilicate glass of claim 16 , further comprising comprises K 2 O, wherein an amount of K 2 O less than 1 mol %. 20. The alkali aluminosilicate glass of claim 16 , comprising less than 1 mol % B 2 O 3 . 21. The alkali aluminosilicate glass of claim 16 , wherein the alkali aluminosilicate glass has a potassium/sodium interdiffusion coefficient of at least about 2.4×10 −10 cm 2 /s at 410° C. 22. The alkali aluminosilicate glass of claim 21 , wherein the potassium/sodium interdiffusion coefficient is in a range from about 2.4×10 −10 cm 2 /s up to about 1.5×10 −9 cm 2 /s at 410° C. 23. The alkali aluminosilicate glass of claim 16 , wherein the glass has a compressive layer extending from a surface of the glass to the depth of layer, and wherein the compressive layer is under a compressive stress of at least about 300 MPa. 24. The alkali aluminosilicate glass of claim 16 , wherein the ion exchanged glass has a Vickers indentation crack initiation load of at least about 7 kgf. 25. The alkali aluminosilicate glass of claim 24 , wherein the ion exchanged glass has a Vickers indentation crack initiation load of at least about 12 kgf.

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Classifications

  • Glasses, glazes or enamels with special properties · CPC title

  • the non-glass component being in the form of microcrystallites, e.g. of optically or electrically active material · CPC title

  • for coloured glass · CPC title

  • 1 mil or less · CPC title

  • containing aluminium oxide or an iron compound · CPC title

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What does patent US9682885B2 cover?
Alkali aluminosilicate glasses that are resistant to damage due to sharp impact and capable of fast ion exchange are provided. The glasses comprise at least 4 mol % P 2 O 5 and, when ion exchanged, have a Vickers indentation crack initiation load of at least about 7 kgf.
Who is the assignee on this patent?
Corning Inc
What technology area does this patent fall under?
Primary CPC classification C03C3/097. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Jun 20 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 7 related publications on this page (citations in our corpus or others sharing the same primary CPC).