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首页> 外文期刊>International Journal of Mechanical Sciences >Prediction of anisotropy and hardening for metallic sheets in tension, simple shear and biaxial tension
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Prediction of anisotropy and hardening for metallic sheets in tension, simple shear and biaxial tension

机译:张力,简单剪切和双轴张力下金属板的各向异性和硬化的预测

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摘要

The mechanical behavior of mild and dual phase steel sheets is investigated at room temperature in quasi-static conditions under different strain paths: uniaxial tension, simple shear and balanced biaxial tension. The aim is to characterize both the anisotropy and the hardening, in order to identify material parameters of constitutive equations able to reproduce the mechanical behavior. In particular, a good description of flow stress levels in tension and shear as well as plastic anisotropy coefficients is expected. Moreover, the Bauschinger effect is investigated with loading-reloading in the reverse direction shear tests and the balanced biaxial tension test gives insight of the mechanical behavior up to very high equivalent plastic strains. Yoshida-Uemori hardening model associated with Bron-Besson orthotropic yield criterion is used to represent the in-plane mechanical behavior of the two steels. The identification procedure is based on minimization of a cost function defined over the whole database. The presented results show a very good agreement between model predictions and experiments: flow stress during loading and reverse loading as well as plastic anisotropy coefficients are well reproduced; it is shown that the work-hardening stagnation after strain path reversal is well estimated in length but Yoshida-Uemori model underestimates the rate of work-hardening.
机译:在室温下准静态条件下,在不同的应变路径下,研究了软质和双相钢板的力学行为:单轴拉伸,简单剪切和平衡双轴拉伸。目的是表征各向异性和硬化,以识别能够再现机械性能的本构方程的材料参数。特别地,期望对拉伸和剪切中的流应力水平以及塑性各向异性系数有很好的描述。此外,在反向剪切试验中通过加载-再加载研究了鲍辛格效应,平衡双轴拉伸试验提供了在非常高的等效塑性应变范围内的力学性能的见解。与Bron-Besson正交各向异性屈服准则相关的Yoshida-Uemori硬化模型用于表示两种钢的面内力学行为。识别过程基于最小化整个数据库中定义的成本函数。给出的结果表明模型预测和实验之间有很好的一致性:很好地再现了加载和反向加载过程中的流应力以及塑性各向异性系数。结果表明,应变路径逆转后的加工硬化停滞在长度上得到了很好的估计,但是吉田植森模型低估了加工硬化的速度。

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