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Geometrically nonlinear analysis of functionally graded plates using a cell-based smoothed three-node plate element (CS-MIN3) based on the C~0-HSDT

机译:基于C〜0-HSDT的基于单元的平滑三节点板元(CS-MIN3)对功能梯度板进行几何非线性分析

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摘要

A cell-based smoothed three-node Mindlin plate element (CS-MIN3) based on the first-order shear deformation theory (FSDT) was recently proposed for static and dynamics analyses of Mindlin plates. In this paper, the CS-MIN3 is extended to geometrically nonlinear analysis of functionally graded plates (FGPs) subjected to thermo-mechanical loadings. In the FGPs, the material properties are assumed to vary through the thickness by a simple power rule of the volume fractions of the constituents. The nonlinear formulation is based on the C~0-type high-order shear deformation plate theory (C~0-HSDT) and the von Karman strains, which deal with small strains and moderate rotations. In the analysis process, both thermal and mechanical loadings are considered and a two-step procedure is performed including a step of analyzing the temperature field along the thickness of the plate and a step of analyzing the geometrically nonlinear behavior of the FGPs subjected to both thermal and mechanical loadings. The accuracy and reliability of the proposed method is verified by comparing its numerical solutions with those of available other numerical results.
机译:最近,基于一阶剪切变形理论(FSDT)的基于单元的平滑三节点Mindlin板单元(CS-MIN3)被提出用于Mindlin板的静态和动力学分析。本文将CS-MIN3扩展到功能梯度板(FGP)承受热机械载荷的几何非线性分析。在FGP中,通过简单的幂法则计算成分的体积分数,就可以认为材料的特性会随厚度而变化。非线性公式基于C〜0型高阶剪切变形板理论(C〜0-HSDT)和von Karman应变,它们涉及小应变和中等旋转。在分析过程中,考虑了热载荷和机械载荷,并执行了两步过程,包括分析沿板厚度方向的温度场的步骤和分析受两种热作用的FGP的几何非线性行为的步骤。和机械负载。通过将其数值解与可用的其他数值结果进行比较,验证了该方法的准确性和可靠性。

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