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A generalized stochastic perturbation technique for plasticity problems

机译:塑性问题的广义随机摄动技术

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The main aim of this paper is to present an algorithm and the solution to the nonlinear plasticity problems with random parameters. This methodology is based on the finite element method covering physical and geometrical nonlinearities and, on the other hand, on the generalized nth order stochastic perturbation method. The perturbation approach resulting from the Taylor series expansion with uncertain parameters is provided in two different ways: (i) via the straightforward differentiation of the initial incremental equation and (ii) using the modified response surface method. This methodology is illustrated with the analysis of the elasto-plastic plane truss with random Young’s modulus leading to the determination of the probabilistic moments by the hybrid stochastic symbolic-finite element method computations. Keywords Elastoplasticity - Finite element method - Nonlinear problems - Stochastic perturbation technique
机译:本文的主要目的是提出一种具有随机参数的非线性可塑性问题的算法和解决方案。该方法基于有限元方法,该方法涵盖了物理和几何非线性,另一方面基于广义的n阶随机扰动方法。由具有不确定参数的泰勒级数展开产生的摄动方法有两种不同的方式:(i)通过初始增量方程的直接微分;(ii)使用改进的响应面法。通过对具有随机杨氏模量的弹塑性平面桁架进行分析,可以说明这种方法,从而可以通过混合随机符号-有限元方法计算来确定概率矩。关键词弹塑性-有限元法-非线性问题-随机摄动技术

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