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Experimental and Theoretical Study of the Cyclic Relaxation of Die Cast Magnesium Alloy

机译:压铸镁合金循环弛豫的实验和理论研究

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Magnesium alloys are among the best light-weight structural material with a relatively high strength-to-weight ratio end excellent technological properties. Therefore, magnesium attracts special attention of researchers working in automotive and aircraft industry. This work paid the efforts to the structural components made out of magnesium alloy AM60 such as chassis, transmission case in automotive, where the components are subject to cyclic loading after being pre-loaded. In this study, the cyclic stress-strain behaviors were investigated by strain-controlled fatigue testing. In order to investigate the effects of R-ratio on mean stress relaxation, the R-ratio ranged from 0.1 to 0.7 at the strain amplitude of 0.3%. The experimental results indicate that the mean stress relaxation increases with the increasing R-ratio. A constitutive model was proposed to simulate the mean stress relaxation. The calculation results show that the constitutive model developed in this work is capable of reproducing the stress relaxation behaviors of magnesium alloy AM60 under strain control.
机译:镁合金是最好的轻质结构材料之一,具有相对较高的强度重量比并具有出色的技术性能。因此,镁引起了汽车和飞机行业研究人员的特别关注。这项工作为使用镁合金AM60制成的结构部件(例如底盘,汽车变速箱)付出了努力,这些部件在预加载后会承受周期性载荷。在这项研究中,通过应力控制疲劳试验研究了循环应力-应变行为。为了研究R比率对平均应力松弛的影响,在0.3%的应变幅度下,R比率在0.1到0.7的范围内。实验结果表明,平均应力松弛随R比的增加而增加。提出了本构模型来模拟平均应力松弛。计算结果表明,本文建立的本构模型能够再现应变控制下镁合金AM60的应力松弛行为。

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