EP2961702A2

Fusion formable lithium aluminosilicate glass ceramic

Abstract

This record has no abstract on file.

Term

7.4 yearsto projected expiry

Projected expiry 26 February 2034, counted from filing; an application has no term until it is granted.

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  2. Filed
  3. Published
  4. Today
  5. Projected expiry

27 claims: 3 independent, 24 dependent

  1. 1
    Claims of equivalent WO 2014134100 A2 CLAIMS 1. A glass ceramic, the glass ceramic comprising:a lithium silicate crystallized component and a lithium aluminum silicate crystallized component;and a residual glass component, the residual glass component comprising an alkali aluminosilicate glass that includes at least one of sodium and potassium, wherein the glass ceramic has a composition located within an area defined by a ternary eutectic of β-spodumene-lithium disilicate-tridymite in the Si0 2 -Al 2 0 3 -Li 2 0 system and a binary eutectic of orthoclase-tridymite in the S1O2- AI2O 3 -K2O system, and wherein the ternary eutectic and binary eutectic occur at temperatures of less than about 1000°C.
  2. 2
    The glass ceramic of Claim 1 , wherein the glass ceramic comprises from about 72 wt% to about 85 wt% S1O2, from about 7 wt% to about 11 wt% AI2O3, from about 4.3 wt% to about 6.5 wt% L12O, and from about 4 wt% to about 9 wt% K 2 0.
  3. 3
    The glass ceramic of Claim 2, wherein Na 2 0 replaces up to about 75% of the K2O present in the glass ceramic on a molar basis.
  4. 4
    The glass ceramic of Claim 2, further comprising up to about 5 wt% BaO, wherein BaO replaces up to about 3.2 wt% K2O in the glass ceramic.
  5. 5
    The glass ceramic of Claim 2, further comprising up to about 3.0 wt% ZnO, wherein ZnO replaces up to about 3.8 wt% AI2O 3 .
  6. 6
    The glass ceramic of Claim 2, further comprising from about 0.1 wt% to about 5.0 wt% P 2 0 5 .
  7. 7
    The glass ceramic of Claim 2, further comprising 0.0001 wt% to about 0.1 wt% of at least one noble metal.
  8. 8
    The glass ceramic of Claim 7, wherein the at least one noble metal comprises silver, and wherein the glass ceramic further comprising at least one of 0.005 wt% to about 0.5 wt% Ce0 2 , 0.005 wt% to about 0.5 wt% Sn0 2 , and 0.005 wt% to about 0.5 wt% Sb 2 0 3 .
  9. 9
    The glass ceramic of Claim 1 , wherein the glass ceramic is formed from a glass having a liquidus viscosity of at least about 100 kpoise.
  10. 10
    The glass ceramic of Claim 9, wherein the glass ceramic is formed from a glass having a liquidus viscosity of at least about 150 kpoise.
  11. 11
    The glass ceramic of Claim 1, wherein the residual glass component comprises at least 20 wt% of the glass ceramic.
  12. 12
    The glass ceramic of Claim 11 , wherein the residual glass component has a quartzospathic composition.
  13. 13
    The glass ceramic of Claim 1 , wherein the lithium aluminum silicate crystalline component has a beta spodumene crystal structure or a beta quartz crystal structure.
  14. 14
    A glass, the glass being cerammable and comprising from about 72 wt% to about 85 wt% Si0 2 , from about 7 wt% to about 11 wt% Al 2 0 3 , from about 4.3 wt% to about 6.5 wt% Li 2 0, and from about 4 wt% to about 9 wt% K 2 0, wherein the glass has a liquidus viscosity of at least about 100 kP.
  15. 15
    The glass of Claim 14, wherein Na 2 0 replaces up to about 75% of the K 2 0 present in the glass ceramic on a molar basis.
  16. 16
    The glass of Claim 14, further comprising up to about 5 wt% BaO, wherein BaO replaces up to about 3.2 wt% K 2 0 in the glass ceramic.
  17. 17
    The glass of Claim 14, further comprising up to about 3.0 wt% ZnO, wherein ZnO replaces up to about 3.8 wt% Al 2 03.
  18. 18
    The glass of Claim 14, further comprising from about 0.1 wt% to about 5.0 wt% P 2 0 5 .
  19. 19
    The glass of Claim 14, further comprising 0.0001 wt% to about 0.1 wt% of at least one noble metal.
  20. 20
    The glass of Claim 19, wherein the at least one noble metal comprises silver, and wherein the glass ceramic further comprising at least one of 0.005 wt% to about 0.5 wt% Ce0 2 , 0.005 wt% to about 0.5 wt% Sn0 2 , and 0.005 wt% to about 0.5 wt% Sb 2 0 3 .
  21. 21
    The glass of Claim 14, wherein the glass has a liquidus viscosity of at least about 100 kpoise.
  22. 22
    The glass of Claim 21, wherein the glass has a liquidus viscosity of at least about 150 kpoise.
  23. 23
    A method of making a glass ceramic, the method comprising:a. down-drawing a glass, the glass comprising from about 72 wt% to about 85 wt% Si0 2 , from about7 wt% to about 11 wt% Al 2 (¾, from about 4.3 wt% to about 6.5 wt% Li 2 0, and from about 4 wt% to about 9 wt% K 2 0, wherein the glass has a liquidus viscosity of at least about 100 kP;and b. heating the glass to form the glass ceramic, wherein forming the glass ceramic includes crystallizing a lithium silicate component and a lithium aluminosilicate component, and wherein the glass ceramic includes a residual glass component, the residual glass component comprising an alkali aluminosilicate glass that comprises at least one of sodium and potassium.
  24. 24
    The method of Claim 23, wherein the step of down-drawing the glass comprises slot-drawing the glass.
  25. 25
    The method of Claim 23, wherein the step of down-drawing the glass comprises fusion-drawing the glass.
  26. 26
    The method of Claim 23, further comprising ion exchanging the glass or the glass ceramic.
  27. 27
    The method of Claim 23, wherein heating the glass to form the glass ceramic comprises heating the glass at a temperature in a range from about 600°C to about 900°C.
Independent claims27