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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Nonlinear Material Model in Part Variation Simulations of Sheet Metals
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Nonlinear Material Model in Part Variation Simulations of Sheet Metals

机译:钣金零件变化模拟中的非线性材料模型

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Current methodologies for variation simulation of compliant sheet metal assemblies and parts are simplified by assuming linear relationships. From the observed physical experiments, it is evident that plastic strains are a source of error that is not captured in the conventional variational simulation methods. This paper presents an adaptation toward an elastoplastic material model with isotropic hardening in the method of influence coefficients (MIC) methodology for variation simulations. The results are presented in two case studies using a benchmark case involving a two-dimensional (2D) quarter symmetric plate with a centered hole, subjected to both uniaxial and biaxial displacement. The adaptation shows a great reduction in central processing unit time with limited effect on the accuracy of the results compared to direct Monte Carlo simulations.
机译:通过假设线性关系,简化了用于顺应性钣金组件和零件的变化仿真的当前方法。从观察到的物理实验中可以明显看出,塑性应变是误差的来源,而传统的变分模拟方法并没有捕获到这种误差。本文提出了一种采用影响系数(MIC)方法进行变化模拟的,具有各向同性硬化的弹塑性材料模型的适应方法。结果在两个案例研究中使用基准案例进行了介绍,该案例涉及具有中心孔的二维(2D)四分之一对称板,该板同时受到单轴和双轴位移。与直接蒙特卡洛模拟相比,这种修改显示出中央处理单元时间大大减少,并且对结果的准确性影响有限。

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