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Stresses in vacuum glazing fabricated at low temperature

机译:低温制造的真空玻璃的应力

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摘要

This paper reports an experimental and theoretical study of the stresses in and durability of vacuum glazing fabricated at low temperature using an indium based edge seal. For the first time a finite-element model with support pillars incorporated directly, enabled the stresses in the whole structure to be explicitly calculated. Experimental validations of the finite element model predictions were undertaken. Modelling results are presented for a case with American Society of Testing and Materials standard winter boundary conditions. It was found that, for the particular system studied, the predicted stress level in the structure is essentially the same for indium sealed and solder glass sealed vacuum glazing, and the magnitude of stress values in the indium seal is comparable with that dictated by the indium strength characteristics. (c) 2006 Elsevier B.V. All rights reserved.
机译:本文报道了使用铟基边缘密封件在低温下制造的真空玻璃的应力和耐久性的实验和理论研究。首次直接将支撑柱纳入其中的有限元模型使得能够显式计算整个结构中的应力。进行了有限元模型预测的实验验证。针对美国材料与试验学会标准冬季边界条件的情况,提供了模型结果。发现,对于所研究的特定系统,铟密封和焊料玻璃密封真空玻璃的结构中的预测应力水平基本相同,铟密封中的应力值大小与铟指示的相当。强度特性。 (c)2006 Elsevier B.V.保留所有权利。

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