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A Model Reduction Technique in Space and Time for Fatigue Simulation

机译:疲劳仿真的时空模型简化技术

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摘要

The simulation of mechanical responses of structures subjected to cyclic loadings for a large number of cycles remains a challenge. The goal herein is to develop an innovative computational scheme for fatigue computations involving nonlinear mechanical behaviour of materials, described by internal variables. The focus is on the Large Time Increment (LATIN) method coupled with a model reduction technique, the Proper Generalized Decomposition (PGD). Moreover, a multi-time scale approach is proposed for the simulation of fatigue involving large number of cycles. The quantities of interest are calculated only at particular pre-defined cycles called the "nodal cycles" and a suitable interpolation is used to estimate their evolution at the intermediate cycles. The proposed framework is exemplified for a structure subjected to cyclic loading, where damage is considered to be isotropic and micro-defect closure effects are taken into account. The combination of these techniques reduce the numerical cost drastically and allows to create virtual S-N curves for large number of cycles.
机译:对承受大量循环载荷的结构的机械响应进行仿真仍然是一个挑战。本文的目的是开发一种创新的计算方案,用于疲劳计算,涉及内部非线性变量对材料的非线性机械行为的影响。重点在于大时间增量(LATIN)方法和模型归约技术,即适当的广义分解(PGD)。此外,提出了一种多时间尺度方法来模拟涉及大量循环的疲劳。感兴趣的数量仅在称为“节点周期”的特定预定义周期内计算,并且使用适当的插值来估计它们在中间周期处的演变。所提出的框架以循环载荷为例,其中损伤被认为是各向同性的,并且考虑了微缺陷的闭合效应。这些技术的结合极大地降低了数值成本,并允许创建大量循环的虚拟S-N曲线。

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  • 会议地点 Dubrovnik(HR)
  • 作者单位

    IBNM, Leibniz Universitaet Hannover, Appelstraße 9a, 30167 Hannover, Germany;

    IBNM, Leibniz Universitaet Hannover, Appelstraße 9a, 30167 Hannover, Germany;

    IBNM, Leibniz Universitaet Hannover, Appelstraße 9a, 30167 Hannover, Germany;

    LMT, ENS Paris-Saclay, CNRS, Universite Paris-Saclay, 61 avenue du President Wilson, 94235 Cachan, France;

    LMT, ENS Paris-Saclay, CNRS, Universite Paris-Saclay, 61 avenue du President Wilson, 94235 Cachan, France;

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