흡착압력에 따른 수직 평판유리 변형특성에 대한 구조해석

왕쩐후안, 권영철
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Abstract

In this study, the flat glass and adsorption pad were modeled using SolidWorks Simulation, to understand the deformation characteristics of the vertical flat glass by the adsorption pressure during vertical transport of LCD. The horizontal and vertical displacements and equivalent stresses of the flat glass were investigated by the structural analysis. From the displacement and stress visualization according to the adsorption pressure, the higher the adsorption pressure, the larger the glass surface protruded. The horizontal deformation of flat glass increased with increasing thickness and the vertical deformation increased with decreasing thickness. In addition, the maximum equivalent stress applied to the flat glass increased significantly as the adsorption pressure increased and the thickness decreased. As a result of the structural analysis, the thinner the thickness of the plate glass, the greater the effect on the adsorption pressure. Especially, the effect of the adsorption pressure was clearly observed at the thickness of 0.5mm.
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吸附压力下垂直平板玻璃变形特性的结构解释
本研究利用SolidWorks Simulation对平板玻璃和吸附垫进行建模,了解液晶显示器垂直输送过程中吸附压力对垂直平板玻璃的变形特性。通过结构分析,研究了平板玻璃的水平和垂直位移及等效应力。根据吸附压力从位移和应力可视化可知,吸附压力越高,玻璃表面凸出越大。平板玻璃的水平变形随厚度的增加而增大,垂直变形随厚度的减小而增大。此外,随着吸附压力的增大和厚度的减小,施加在平板玻璃上的最大等效应力显著增大。由结构分析可知,平板玻璃的厚度越薄,对吸附压力的影响越大。特别是在0.5mm厚度处,吸附压力的影响较为明显。
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