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首页> 外文期刊>Journal of Computational and Applied Research in Mechanical Engineering (JCARME) >Initial blank design of deep drawn orthotropic materials using inverse finite element method
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Initial blank design of deep drawn orthotropic materials using inverse finite element method

机译:拉伸正交异性材料的初始坯料设计的逆有限元方法

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In this work, an inverse finite element formulation was modified for considering material anisotropy in obtaining blank shape and forming severity of deep drawn orthotropic parts. In this procedure, geometry of final part and thickness of initial blank sheet were known. After applying ideal forming formulations between material points of initial blank and final shape, an equation system was obtained in terms of unknown initial positions on the blank sheet. Initial positions of material points were obtained by solving this equation system. In this algorithm, the Hill's anisotropic plasticity and associated plastic flow rule were used. Strain distribution on the final part was obtained by comparing the initial blank and final part. The method was applied for the simulation of drawing an orthotropic blank to a rectangular cup. Accuracy of the presented method was evaluated by comparing the results with numerical forward method and experiment results.
机译:在这项工作中,对逆有限元公式进行了修改,以考虑材料各向异性来获得深拉正交异性零件的毛坯形状和成形严重性。在此过程中,最终零件的几何形状和初始空白纸的厚度是已知的。在初始坯料和最终形状的材料点之间应用理想的成型配方后,就可以根据坯料上未知的初始位置获得方程系统。物质点的初始位置通过求解该方程组获得。在该算法中,使用了希尔的各向异性可塑性和相关的塑性流动规则。通过比较初始坯料和最终零件获得最终零件上的应变分布。该方法用于模拟正交各向异性毛坯到矩形杯的模拟。通过将结果与数值正演方法和实验结果进行比较,评估了所提出方法的准确性。

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