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Measurement and modeling of simple shear deformation under load reversal: Application to advanced high strength steels

机译:反向载荷下简单剪切变形的测量与建模:在高级高强度钢中的应用

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In this paper, the stress-strain behavior under load reversal of advanced high strength steel (AHSS) sheet samples was measured using a modified simple shear (SS) apparatus. The forward-reverse loading behavior was characterized for three different grades of AHSS; namely, DP, TRIP and TWIP steels. For comparison purpose, compression-tension (CT) tests were also carried out for the same materials. For all the cases, a typical complex anisotropic hardening behavior, including the Bauschinger effect, transient strain hardening with high rate and permanent softening, was observed during load reversal. No premature localization and sheet buckling occurred in these experiments, which have been major technical hurdles in CT tests. For example, an engineering shear strain of over 40%, which corresponds to an effective strain of roughly 0.2, at reversal was achieved for DP980 although the uniform elongation of this material in uniaxial tension is only 5%. A recently developed distortional hardening model (HAH) was employed to reproduce the SS stress-strain curves. Using the coefficients determined with these SS data, the CT behavior was predicted with the HAH model and compared with experimental results. This complementary study indicated that the constitutive model determined from the SS flow curves satisfactorily reproduced the CT hardening behavior. As an application, finite element simulations of springback were carried out for 2D draw-bending of a strip sheet. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本文中,使用改进的简单剪切(SS)装置测量了高级高强度钢(AHSS)钢板样品在反向载荷下的应力应变行为。对三种不同等级的AHSS进行了正向-反向加载行为的表征。即DP,TRIP和TWIP钢。为了进行比较,还对相同的材料进行了压缩拉伸(CT)测试。在所有情况下,在载荷反向过程中都观察到典型的复杂各向异性硬化行为,包括鲍辛格效应,高速率的瞬时应变硬化和永久软化。在这些实验中没有发生过早的定位和板屈曲,这是CT测试中的主要技术障碍。例如,尽管DP980材料在单轴拉伸中的均匀伸长率仅为5%,但在反向时却获得了超过40%的工程剪切应变,相当于约0.2的有效应变。使用最近开发的变形硬化模型(HAH)来再现SS应力-应变曲线。使用根据这些SS数据确定的系数,可以使用HAH模型预测CT行为并将其与实验结果进行比较。这项补充研究表明,根据SS流动曲线确定的本构模型可以令人满意地重现CT的硬化行为。作为应用,对带钢薄板的二维拉伸弯曲进行了回弹的有限元模拟。 (C)2015 Elsevier Ltd.保留所有权利。

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