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Nonlinear material and geometric analysis of thick functionally graded plates with nonlinear strain hardening using nonlinear finite element method

机译:非线性有限元法用非线性菌株硬化厚功能梯度板的非线性材料和几何分析

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The present paper deals with three dimensional nonlinear geometrically and elastoplastic analyses of thick functionally graded plates with nonlinear strain hardening. The boundary conditions are assumed to be general. The plate consists of ceramic (SiC) and metal (Al) phases varying smoothly through the thickness. The effective elastic material properties are obtained by Mod-Tanaka scheme where the plastic behavior of the FG plate is described by the von-Mises yield criterion, nonlinear isotropic strain hardening and the Prandtl-Reuss constitutive equations in combination with the Tro model. The governing equations are obtained from the incremental theory of plasticity in conjunction with the Green-Lagrange nonlinear kinematics. In order to investigate the nonlinear elastoplastic response of the FGM, the nonlinear graded finite element method is developed from three-dimensional continuum concepts that admit arbitrarily large displacements and rotations. This formulation has been implemented and the effect of material gradient index, boundary conditions and thickness-to-length ratio on the nonlinear elastoplastic analysis of the FG plate as well as the development of plastic zone are presented and discussed. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:本文涉及具有非线性菌株硬化的厚功能渐变平板的三维非线性几何和弹性塑性分析。假设边界条件是一般的。该板由陶瓷(SiC)和金属(Al)相通过厚度平滑地变化。通过Mod-Tanaka方案获得有效的弹性材料特性,其中FG板的塑性行为由Von-Mises屈服标准,非线性各向同性菌株硬化和Prandtl-Reuss构成方程与TRO型号组合。控制方程是从可塑性的增量理论与绿色拉格朗日非线性运动学一起获得。为了研究FGM的非线性弹塑性响应,非线性分级有限元方法是从三维连续概念开发的,该概念承认任意大的位移和旋转。提出并讨论了该制剂的实施方式和材料梯度指数,边界条件和厚度与长度比对FG板的非线性弹塑性分析以及塑料区的发展的影响。 (c)2019年Elsevier Masson SAS。版权所有。

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