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US20110079048A1 - Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass - Google Patents

Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass
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Publication number
US20110079048A1
US20110079048A1US12/966,002US96600210AUS2011079048A1US 20110079048 A1US20110079048 A1US 20110079048A1US 96600210 AUS96600210 AUS 96600210AUS 2011079048 A1US2011079048 A1US 2011079048A1
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United States
Prior art keywords
glass
glass piece
range
temperature
samples
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US12/966,002
Inventor
Larry J. Shelestak
George B. Goodwin
Amarendra Mishra
James M. Baldauff
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Schott AG
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Schott AG
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Publication date
Application filed by Schott AGfiledCriticalSchott AG
Priority to US12/966,002priorityCriticalpatent/US20110079048A1/en
Publication of US20110079048A1publicationCriticalpatent/US20110079048A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A glass composition for chemical tempering includes oxides in wt % ranges of: SiO260 to 75; Al2O318 to 28; Li2O 3 to 9; Na2O 0 to 3; K2O 0 to 0.5; CaO 0 to 3; MgO 0 to 3; ZrO20 to 3; where MgO+CaO is 0 to 6 wt %; Al2O3+ZrO2is 18 to 28 wt %, and Na2O+K2O is 0.05 to 3.00 wt %. The glass has a log 10 viscosity temperature in the temperature range of 1328° F. (720° C.) to 1499° F. (815° C.); a liquidus temperature in the temperature range of 2437° F. (1336° C.) to 2575° F. (1413° C.), and a log 7.6 softening point temperature in the temperature range of 1544° F. (840° C.) to 1724° F. (940° C.). The chemically tempered glass has, among other properties, an abraded modulus of rupture of 72 to 78 KPSI, and a modulus of rupture of 76 to 112 KPSI.

Description

Claims (7)

56. The method according toclaim 52, wherein the glass piece has at least one of the following properties:
glass within the tensile stress zone of the glass piece has a higher concentration of lithium than glass in the compression zone of the glass piece;
the glass piece has a case depth in the range of 7 to 16.5 mils (0.17 to 0.419 millimeters);
center tension in the glass piece is in the range of 5,700 to 14,900 pounds per square inch (39 to 103 mega Pascal (“mPa”));
the glass has a CTA in the range of 632 to 1,390 pounds per inch (113 to 248 kilograms per centimeter);
the glass piece has a modulus of rupture in the range of 76,000 to 120,000 pounds per square inch (524 to 827 mPa);
the glass piece has an abraded modulus of rupture in the range of 67,000 to 89,000 pounds per square inch (462 to 614 mPa);
the glass piece has a HV (Vicker's hardness) 1000 in the range of 586 to 614 kilograms force per square millimeters; and
the glass piece has an HK (Knoop's hardness) 1000 in the range of 503 to 529 kilograms force per square millimeters.
ped glass piece.
57. The method according toclaim 53, wherein the glass piece has at least one of the following properties:
glass within the tensile stress zone of the glass piece has a higher concentration of lithium than glass in the compression zone of the glass piece;
the glass piece has a case depth in the range of 7 to 16.5 mils (0.17 to 0.419 millimeters);
center tension in the glass piece is in the range of 5,700 to 14,900 pounds per square inch (39 to 103 mega Pascal (“mPa”));
the glass has a CTA in the range of 632 to 1,390 pounds per inch (113 to 248 kilograms per centimeter);
the glass piece has a modulus of rupture in the range of 76,000 to 120,000 pounds per square inch (524 to 827 mPa);
the glass piece has an abraded modulus of rupture in the range of 67,000 to 89,000 pounds per square inch (462 to 614 mPa);
the glass piece has a HV (Vicker's hardness) 1000 in the range of 586 to 614 kilograms force per square millimeters; and
the glass piece has an HK (Knoop's hardness) 1000 in the range of 503 to 529 kilograms force per square millimeters.
US12/966,0022003-10-242010-12-13Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glassAbandonedUS20110079048A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US12/966,002US20110079048A1 (en)2003-10-242010-12-13Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass

Applications Claiming Priority (4)

Application NumberPriority DateFiling DateTitle
US51413603P2003-10-242003-10-24
US10/956,500US7727917B2 (en)2003-10-242004-10-01Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass
US12/492,350US7871703B2 (en)2003-10-242009-06-26Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass
US12/966,002US20110079048A1 (en)2003-10-242010-12-13Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass

Related Parent Applications (1)

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US12/492,350DivisionUS7871703B2 (en)2003-10-242009-06-26Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass

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US20110079048A1true US20110079048A1 (en)2011-04-07

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US10/956,500Active2027-12-15US7727917B2 (en)2003-10-242004-10-01Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass
US12/492,350Expired - LifetimeUS7871703B2 (en)2003-10-242009-06-26Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass
US12/789,518Expired - LifetimeUS8062749B2 (en)2003-10-242010-05-28Aircraft transparency having chemically tempered lithia-alumina-silica containing glass and method of making the chemically tempered glass
US12/966,002AbandonedUS20110079048A1 (en)2003-10-242010-12-13Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass

Family Applications Before (3)

Application NumberTitlePriority DateFiling Date
US10/956,500Active2027-12-15US7727917B2 (en)2003-10-242004-10-01Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass
US12/492,350Expired - LifetimeUS7871703B2 (en)2003-10-242009-06-26Lithia-alumina-silica containing glass compositions and glasses suitable for chemical tempering and articles made using the chemically tempered glass
US12/789,518Expired - LifetimeUS8062749B2 (en)2003-10-242010-05-28Aircraft transparency having chemically tempered lithia-alumina-silica containing glass and method of making the chemically tempered glass

Country Status (5)

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US (4)US7727917B2 (en)
EP (2)EP1682458B1 (en)
JP (2)JP4742046B2 (en)
CN (1)CN1886348B (en)
WO (1)WO2005042423A1 (en)

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US7871703B2 (en)2011-01-18
JP4742046B2 (en)2011-08-10
EP2319812A1 (en)2011-05-11
HK1101509A1 (en)2007-10-18
US7727917B2 (en)2010-06-01
US20100233407A1 (en)2010-09-16
JP2010001216A (en)2010-01-07
US20050090377A1 (en)2005-04-28
WO2005042423A1 (en)2005-05-12
CN1886348B (en)2011-08-31
EP1682458B1 (en)2013-01-02
US20090263662A1 (en)2009-10-22

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