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Material parameters identification procedure for BBC2003 yield criterion and earing prediction in deep drawing

机译:BBC2003屈服准则的材料参数识别程序及深拉预应力预测

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摘要

Formation of wavy boundaries at the open end of a drawn cup is referred to as earing. Plastic anisotropy is the main parameter contributing to formation of ears. Therefore, in order to eliminate the undesirable ears in sheet metal parts, it is essential to predict the deformation behavior of sheet metals using advanced anisotropic yield criteria. Accordingly, the objective of this article is that to use BBC2003 yield criterion, to predict earing in deep drawing of cylindrical cups from AA3105 aluminum alloy. First, a new and simple approach is introduced to calculate the eight constants of this yield function. In this approach, only the uniaxial and plane strain tension tests results, were used. Nonlinear governing equations of these constants were derived and solved by means of well-known steepest descend method. In order to investigate performance and accuracy of this method, the calculated constants were utilized to predict normalized uniaxial yield stress, anisotropy parameters and plane stress yield surface. Then, based on this yield criterion and the associated flow rule, a VUMAT subroutine was developed and employed in the commercial finite element software ABAQUS/Explicit dynamics. The simulation of drawing process was conducted for anisotropic AA3105 aluminum alloy sheet. Cup height (earing profile) and thickness distribution were obtained from experiments and corresponding numerical simulations. Comparison of these results demonstrates great potential of BBC2003 yield criterion in accurate prediction of earing. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在拉制杯的开口端形成波浪形边界称为耳形。塑性各向异性是导致耳朵形成的主要参数。因此,为了消除钣金零件中不希望的耳朵,必须使用先进的各向异性屈服准则来预测钣金的变形行为。因此,本文的目的是使用BBC2003屈服准则,以AA3105铝合金对圆柱杯进行深冲时预测耳形。首先,引入一种新的简单方法来计算此屈服函数的八个常数。在这种方法中,仅使用了单轴和平面应变张力测试结果。这些常数的非线性控制方程是通过众所周知的陡峭下降法推导和求解的。为了研究该方法的性能和准确性,利用计算的常数来预测归一化的单轴屈服应力,各向异性参数和平面应力屈服面。然后,基于该屈服准则和相关的流动规则,开发了VUMAT子例程并将其用于商业有限元软件ABAQUS / Explicit dynamics。对各向异性的AA3105铝合金薄板进行了拉伸过程的仿真。杯高(耳廓)和厚度分布是通过实验和相应的数值模拟获得的。这些结果的比较表明,BBC2003产量标准在准确预测耳穗方面具有巨大潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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