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A numerical parametric investigation of localization and forming limits

机译:局部化和成形极限的数值参数研究

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摘要

The ability of a theoretical model to accurately predict localization and failure strains, which characterize the formability of materials, has been a controversial subject as researchers have tried various analytical methods over the years to predict forming limit diagrams. In this work, we analyze various aspects of finite element modeling in which large deformation plasticity is coupled with continuum damage evolution. In the context of the Bammann-Chiesa-Johnson (BCJ) internal state variable model, we examine different finite element codes (DYNA3D, PRONTO3D, and JAC3D), sheet thicknesses (1.0 cm and 0.1 cm), types of instabilities (geometric perturbation and various initial void volume fraction mismatches), element types [solid continuum, Hughes and Liu (1980), and Belytschko and Tsay (1983)], mesh refinement, and two-stage nonproportional straining conditions. By varying these parameters in finite element calculations for determining forming limits, we ascertain not only the forming limit diagrams in a short time but an understanding of parametric effects that have been issues of concern for the auto, steel, and aircraft industries.
机译:由于研究人员多年来尝试了各种分析方法来预测成形极限图,因此理论模型能否准确预测表征材料可成形性的局部应变和破坏应变的能力一直是一个有争议的主题。在这项工作中,我们分析了有限元建模的各个方面,在这些方面中,大变形可塑性与连续损伤的演变相结合。在Bammann-Chiesa-Johnson(BCJ)内部状态变量模型的背景下,我们研究了不同的有限元代码(DYNA3D,PRONTO3D和JAC3D),薄板厚度(1.0 cm和0.1 cm),不稳定性类型(几何扰动和各种初始空隙体积分数不匹配),元素类型[固体连续体,Hughes和Liu(1980)以及Belytschko和Tsay(1983)],网格细化和两阶段非比例应变条件。通过改变用于确定成形极限的有限元计算中的这些参数,我们不仅可以确定短时间内的成形极限图,还可以了解对汽车,钢铁和飞机行业所关注的参数影响。

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