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One-step inverse isogeometric analysis for the simulation of sheet metal forming

机译:用于钣金成形仿真的一步式反等几何分析

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Isogeometric analysis (IGA) has been used with great success when combined with incremental methods to simulate sheet metal forming. In this paper, we present the development of one-step inverse IGA based on the total deformation theory of plasticity. For a large number of industrial stamping parts, the membrane effects are dominant Thus, we adopted an isogeometric membrane element to predict the flattened contour of the initial blank from the energy-based initial solution estimation approach. In addition, we used the Newton-Raphson algorithm for nonlinear plastic iterations to evaluate the thickness and equivalent strain and stress of the final stamping parts. We applied our framework to square box and S-rail surface models for demonstration. The results for these two examples illustrate the performance of one-step inverse IGA and its applicability to the integrated design of sheet metal forming. (C) 2019 Elsevier B.V. All rights reserved.
机译:当与增量方法相结合来模拟钣金成形时,等几何分析(IGA)已成功使用。在本文中,我们基于可塑性的总变形理论介绍了一步式逆IGA的发展。对于大量的工业冲压零件,膜效应是主要的。因此,我们采用等几何膜元件,从基于能量的初始溶液估计方法中预测初始坯料的扁平轮廓。此外,我们使用了Newton-Raphson算法进行非线性塑性迭代,以评估最终冲压零件的厚度以及等效应变和应力。我们将我们的框架应用于方箱和S型轨道表面模型进行演示。这两个示例的结果说明了一步式反向IGA的性能及其在钣金成形集成设计中的适用性。 (C)2019 Elsevier B.V.保留所有权利。

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