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    • 4. 发明授权
    • Glasses with very high index of refraction and low density
    • 眼镜具有很高的折射率和低密度
    • US5288669A
    • 1994-02-22
    • US17183
    • 1993-02-12
    • Luc GrateauPascale LabordeMichel Prassas
    • Luc GrateauPascale LabordeMichel Prassas
    • C03C3/068C03C4/00C03C3/066
    • C03C3/068Y10S501/901
    • This invention relates to glasses exhibiting refractive indices higher than 1.880, Abbe numbers of at least 29, densities lower than 4.1, good chemical durability and stability against devitrification, and an integrated transmission over the range of 380-800 nm at a thickness of 10 mm greater than 79%, the glasses consisting essentially, expressed in terms of weight percent on the oxide basis, of______________________________________ SiO.sub.2 5-8 B.sub.2 O.sub.3 15-21 ZrO.sub.2 3-10 TiO.sub.2 7-17 Nb.sub.2 O.sub.5 20.5-26 ZrO.sub.2 + TiO.sub.2 + Nb.sub.2 O.sub.5 29-45 La.sub.2 O.sub.3 19-32 Y.sub.2 O.sub.3 0-9 CaO 8-16 SrO 0-5 BaO 0-5 MgO 0-5 CaO + SrO + BaO + MgO 8-16 ZnO 0-5 Li.sub.2 O 0-2 Na.sub.2 O 0-2 K.sub.2 O 0-2 Li.sub.2 O + Na.sub.2 O + K.sub.2 O 0-2. ______________________________________
    • 本发明涉及折射率高于1.880的玻璃,阿贝数至少为29,密度小于4.1,具有良好的化学耐久性和耐失透性的稳定性,以及厚度为10mm的380-800nm范围内的集成透射率 大于79%的玻璃基本上以氧化物的重量百分数表示的-SiO25-8-B2O315-21-ZrO2 3-10-TiO2 7-17-Nb2O520.5-26-ZrO2 + TiO2 + Nb2O529-45-La2O319-32-Y2O30-9-CaO 8-16-SrO0-5-BaO0-5-MgO0-5-CaO + SrO + BaO + MgO 8-16-ZnO0-5-Li2O0-2-Na2O0 -2-K2O0-2-Li2O + Na2O + K2O0-2-
    • 9. 发明申请
    • PROCESS FOR SEALING A GLASS PACKAGE AND RESULTING GLASS PACKAGE
    • 密封玻璃包装和玻璃包装的方法
    • US20120055553A1
    • 2012-03-08
    • US13219979
    • 2011-08-29
    • Stephan L. LogunovMichel Prassas
    • Stephan L. LogunovMichel Prassas
    • H01L31/02C03B23/00
    • C03C4/08C03B23/20C03C3/11C03C27/06H01G9/2031H01G9/2059H01G9/2077Y02E10/542
    • A method is provided for sealing one or more fill holes (42, 44) in a glass plate (14) of an organic dye solar cell and other glass packages by covering the hole(s) (42, 44) with a laser absorbing glass patch (52, 54). The outer perimeter of the glass patch (52, 54) is melted with a laser such that the outer perimeter of the glass patch (52, 54) is hermetically sealed to the glass plate (14). Another method is provided in which the fill holes (42, 44) are covered with a glass patch (52, 54) having a loop of absorbing frit around the outer periphery thereof. The loop of frit is melted with a laser such that the outer perimeter of the glass patch (52, 54) is hermetically sealed to the glass plate (14). In both process, the laser beam is either (1) formed into a loop shape beam around the perimeter of the glass patch (52, 54) or (2) quickly travels around the perimeter of the glass patch (52, 54) in such a manner that the loop of frit or the entire perimeter of the absorbing glass patch (52, 54) is uniformly heated to substantially the same temperature to minimize thermal stresses crated during heating and sealing.
    • 提供一种用于通过用激光吸收玻璃覆盖孔(42,44)来密封有机染料太阳能电池和其它玻璃封装的玻璃板(14)中的一个或多个填充孔(42,44)的方法 补丁(52,54)。 玻璃贴片(52,54)的外周边用激光熔化,使得玻璃贴片(52,54)的外周边气密地密封到玻璃板(14)上。 提供另一种方法,其中填充孔(42,44)被玻璃贴片(52,54)覆盖,玻璃贴片围绕其外围具有吸收玻璃料的环。 玻璃料的回路用激光熔化,使得玻璃贴片(52,54)的外周边气密地密封在玻璃板(14)上。 在这两个过程中,激光束(1)被形成为围绕玻璃贴片(52,54)的周边的环形束,或者(2)在玻璃贴片(52,54)的周边上快速地移动 吸收玻璃贴片(52,54)的玻璃料或整个周边的环路被均匀地加热到基本相同的温度以最小化加热和密封期间的热应力的方式。