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首页> 外文期刊>International Journal of Mechanical Sciences >Application of the first-order shear deformation theory to the analysis of laminated glasses and photovoltaic panels
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Application of the first-order shear deformation theory to the analysis of laminated glasses and photovoltaic panels

机译:一阶剪切变形理论在夹层玻璃和光伏板分析中的应用

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Laminated plates and photovoltaic panels are composed of three layers, whereas the core layer, comprising the solar cells and their encapsulation, is more shear-compliant than the skin layers. First-order shear deformation theories (FSDT) like the Mindlin theory are usually applied to these laminated plates in combination with a homogenisation approach. If the differences in shear stiffnesses are too strong, the FSDT may fail to predict the deformation behaviour accurately. This paper evaluates the applicability range of FSDT to the laminated glass and photovoltaic panels. Furthermore, a user-defined element is integrated with the subroutine User Element in Abaqus. This element utilises a homogenisation approach to determine the effective material parameters. To verify the results of the finite element analysis, a closed-form series solution is applied. The attention is placed on the accurate representation of the boundary layer effects that are important for the strength analysis. (C) 2015 Elsevier Ltd. All rights reserved.
机译:层压板和光伏面板由三层组成,而包含太阳能电池及其封装的核心层比表层更具剪切适应性。类似于Mindlin理论的一阶剪切变形理论(FSDT)通常结合均质化方法应用于这些层压板。如果剪切刚度的差异太大,则FSDT可能无法准确预测变形行为。本文评估了FSDT在夹层玻璃和光伏面板中的适用范围。此外,用户定义元素与Abaqus中的子例程User Element集成在一起。该元素利用均质化方法确定有效的材料参数。为了验证有限元分析的结果,应用了封闭形式的级数解。注意力集中在边界层效应的精确表示上,这对于强度分析很重要。 (C)2015 Elsevier Ltd.保留所有权利。

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