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Nonlinear thermal analysis of multilayered composite and FGM plates with temperature-dependent properties based on an asymptotic numerical method

机译:基于渐近数值的温度依赖性特性的多层复合和FGM平板的非线性热分析

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摘要

In this paper, a mathematical procedure is elaborated based on large deformation, finite element and perturbation methods for thermo-large amplitude analysis of anisotropic laminated and sandwich FGM plates with temperature-dependent properties. Nonlinear thermal dependence distribution following a power law is adapted. Various types of multilayered composite plates with position and temperature-dependent material properties are considered. Mathematical formulations and explicit relationships are presented in the frame of finite element methods. The structure is subjected to linear and uniform temperature variations. The temperature and the displacement are expanded in power series with unknown terms, and the numerical solution is obtained by the finite element method. The homotopy method is used for nonlinear thermal buckling, and a continuation procedure is elaborated for nonlinear thermal-displacement responses. The nonlinear thermal critical buckling load is first computed and the postbuckling equilibrium path of FGM and laminated plates under thermal loading is investigated. Temperature-dependent properties and geometry effects as well as boundary conditions on the nonlinear thermal buckling and postbuckling behaviors are analyzed.
机译:在本文中,基于大变形,有限元和扰动方法来阐述了具有温度依赖性特性的各向异性层压和夹层FGM板的热大变形,有限元和扰动方法。权力律后的非线性热依赖性分布适应。考虑各种类型的多层复合板,具有位置和温度依赖性材料特性。在有限元方法框架中呈现数学制剂和显式关系。该结构进行线性和均匀的温度变化。温度和位移在功率系列中以未知的术语扩展,数值溶液通过有限元方法获得。同型方法用于非线性热屈曲,并阐述了用于非线性热位应答的延续过程。首先研究了非线性热关键屈曲载荷,并研究了在热负荷下FGM和层压板的出现均衡路径。分析了温度依赖性的性质和几何效应以及非线性热屈曲和出现后行为的边界条件。

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