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Finite Element Analysis Of Temperature-induced Deflection Of Vacuum Glazing

机译:真空玻璃的温度引起挠度的有限元分析

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摘要

Mechanical loading of vacuum glazing mainly results from atmospheric pressure and temperature differences between inside and outside air, which induce a differential thermal expansion of the internal and external glass panes. These are separated by a narrow evacuated gap of only a few tenths of a millimeter. This paper presents the results of static non-linear finite element analyses for vacuum glazing with surfaces up to 3 × 3 m~2 and glass pane thickness between 3 and 10 mm. These analyses were conducted using three different styles of finite element modeling for vacuum glazing. The non-linear deformation behavior and the particular deflection patterns observed for large-area vacuum glazing were investigated for two basic sets of boundary conditions. The paper further examines parameter studies carried out to assess the impact of the support pillars, which act as spacers between the glass panes, on the transverse shear stiffness of the glazing and on the overall glazing deflection.
机译:真空玻璃的机械负载主要是由于内部和外部空气之间的大气压和温度差引起的,从而引起内部和外部玻璃板的热膨胀差异。它们之间的空隙只有十分之几十分之一。本文介绍了对表面最大为3×3 m〜2且玻璃板厚度为3至10 mm的真空玻璃进行静态非线性有限元分析的结果。这些分析是使用三种不同样式的真空玻璃有限元建模进行的。对于两组基本边界条件,研究了大面积真空玻璃的非线性变形行为和特定的偏转模式。本文进一步检查了参数研究,以评估作为玻璃窗格之间的间隔物的支撑柱对玻璃的横向剪切刚度和整体玻璃挠度的影响。

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