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An isogeometric finite element approach for thermal bending and buckling analyses of laminated composite plates

机译:叠层复合板热弯曲和屈曲分析的等几何有限元方法

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摘要

Temperature rise in a plate structure produces non-zero transverse normal strain. Thus, a six-variable quasi-3D model with one additional variable in transverse displacement of higher-order shear deformation theory (HSDT) is developed in this paper to take into account the effects of transverse shears and normal strain in a laminated composite plate. The governing equation is discretized by isogeometric analysis (IGA), which naturally fulfills the C-1-continuity requirement of the plate model. Due to the presence of bending-extension coupling, two kinds of thermal plate issues are considered - thermal buckling and thermal bending phenomena. Several numerical examples are provided to show the accuracy of the present method compared to reference results. Furthermore, it has been confirmed that the transverse normal strain cannot be discarded, especially for thick plates under a temperature environment. (C) 2017 Elsevier Ltd. All rights reserved.
机译:板结构中的温度升高会产生非零的横向法向应变。因此,本文开发了一种六变量准3D模型,该模型在高阶剪切变形理论(HSDT)的横向位移中具有一个附加变量,以考虑层压复合板中的横向剪切和法向应变的影响。控制方程通过等几何分析(IGA)离散化,它自然满足了板模型的C-1连续性要求。由于存在弯曲-延伸耦合,因此考虑了两种热板问题-热屈曲和热弯曲现象。提供了几个数值示例来显示本方法与参考结果相比的准确性。此外,已经证实不能消除横向法向应变,特别是对于在温度环境下的厚板。 (C)2017 Elsevier Ltd.保留所有权利。

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