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Study of the influence of selected anisotropic parameter in the Barlat's model on the drawpiece shape

机译:Barlat模型中所选各向异性参数对牵引形状的影响研究

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In this paper, the numerical analysis and computer simulation of deep drawing process has been presented. The incremental model of the process in updated Lagrangian formulation with the regard of the geometrical and physical nonlinearity has been evaluated by variational and the finite element methods. The Frederic Barlat's model taking into consideration the anisotropy of materials in three main and six tangents directions has been used. The work out application in Ansys/Ls-Dyna program allows complex step by step analysis and prognoses: the shape, dimensions and state stress and strains of drawpiece. The paper presents the influence of selected anisotropic parameter in the Barlat's model on the drawpiece shape, which includes: height, sheet thickness and maximum drawing force. The important factors determining the proper formation of drawpiece and the ways of their determination have been described.
机译:本文介绍了深绘制过程的数值分析与计算机仿真。 通过变分和有限元方法评估了更新的拉格朗日配方中更新拉格朗日配方中的过程的增量模型。 已经使用了Frederic Barlat的模型,考虑到三个主要和六个切线方向的材料的各向异性。 ANSYS / LS-DYNA程序中的解决方法允许复杂的步骤分析和预后:凹凸的形状,尺寸和状态应力和拉杆菌株。 本文介绍了Barlat模型中所选各向异性参数在牵引形状的模型中的影响,包括:高度,板厚度和最大拉伸力。 已经描述了确定正确形成抽屉的重要因素及其决定的方法。

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