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The Effect of Glass Thickness on Stress in Vacuum Glazing

机译:玻璃厚度对真空玻璃中应力的影响

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Heat transfer through multiple pane windows can be reduced by creating a vacuum pressure less than 0.1 Pa between the glass panes, with low emittance coatings on one or more of the internal surfaces. Fabrication of vacuum glazing (VG) requires the formation of a hermetic seal around the periphery of the glass panes together with an array of support pillars between the panes to prevent them from touching under atmospheric pressure. Atmospheric pressure and temperature differentials induce stress which can affect the integrity of the glazing. Several parameters define the stresses in VG including the glass thickness, pillar specifications, glazing dimensions and edge seal configuration. Inherent stresses in VG can result in fractures in the glass panes and failure of the edge seal. In this study, stress in VG with different glass thicknesses is theoretically studied using Finite Element Modelling (FEM). Based on the finding in this study, suggestions are made to address problems resulting from the use of thinner glass panes in the fabrication of VG. This can lead to the development of high performance, light and thin VG.
机译:通过在玻璃窗格之间产生小于0.1 Pa的真空压力,并在一个或多个内表面上形成低辐射涂层,可以减少通过多个窗格窗口的传热。真空玻璃(VG)的制造需要围绕玻璃板的外围形成气密密封,并且在玻璃板之间形成一系列支撑柱,以防止它们在大气压下接触。大气压力和温度差会引起应力,从而影响玻璃的完整性。几个参数定义了VG中的应力,包括玻璃厚度,支柱规格,玻璃尺寸和边缘密封结构。 VG中的固有应力可能导致玻璃窗格破裂和边缘密封失效。在这项研究中,使用有限元建模(FEM)从理论上研究了具有不同玻璃厚度的VG中的应力。根据这项研究的发现,提出了一些解决VG制造中使用较薄玻璃板所引起的问题的建议。这可以导致高性能,轻薄的VG的发展。

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