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Evaluation and numerical modeling of phenomenological approach for AZ31B-F magnesium alloy under multiaxial fatigue

机译:多轴疲劳下AZ31B-F镁合金现象方法的评价与数值模型

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Magnesium alloys have been attractive to use in structural components due to their high strength to weight ratio, low density and high damping capacity. However, magnesium alloys show peculiar plastic deformation mechanisms under cyclic loads (twinning and de-twinning) that causes the asymmetric material behaviour and limits their use in structural components. Recent researches indicate that this type of plastic deformation mechanism cannot be fully characterized using the typical tools used in steels. Therefore, the phenomenological Hypo-strain (HYPS) model has been developed to capture the asymmetric behaviour of magnesium alloys under uniaxial and multiaxial loadings. This study aims to evaluate the phenomenological Hypo-strain approach for AZ31B-F magnesium alloy and to implement the HYPS model on an external subroutine (UMAT) to run on Abaqus. The goal is to reach a numerical tool that can be used to accurately describe the cyclic elastic-plastic behaviour of magnesium alloys in synergy with finite element packages. In order to characterize the cyclic behaviour of AZ31B-F magnesium alloy, experimental tests were performed considering proportional and non-proportional loadings. To evaluate the implemented model in UMAT, these results were correlated with the experiments and with the analytical HYPS approach. Moreover, the estimates were also correlated with the Armstrong-Frederick model available on Abaqus/Standard 6.14 library. The results have shown that the HYPS model was successful implemented on the UMAT subroutine with a good correlation between experimental tests and the HYPS model. Some remarks between the HYPS and Armstrong-Frederick models are drawn.
机译:由于其高强度,低密度和高阻尼能力,镁合金在结构部件中具有吸引力。然而,镁合金显示在循环负载下的特殊塑性变形机制(孪生和去孪晶),导致不对称的材料行为并限制它们在结构部件中的使用。最近的研究表明,这种类型的塑性变形机构不能使用钢中使用的典型工具完全表征。因此,已经开发出现象学的低菌株(HUMPS)模型以捕获单轴和多轴荷载下镁合金的不对称行为。本研究旨在评估AZ31B-F镁合金的现象效果效果方法,并在外部子程序(UMAT)上实现百下模型,在ABAQUS上运行。目标是达到一个数字工具,可用于准确地描述镁合金的协同元件中镁合金的循环弹性行为。为了表征AZ31B-F镁合金的循环行为,考虑比例和非比例载荷进行实验测试。为了评估UMAT中的实施模型,这些结果与实验相关,分析Hyps方法与实验相关联。此外,估计也与ABAQUS /标准6.14库上的Armstrong-Frederick模型相关。结果表明,在umat子程序上成功地在umat子程序中实现,实验测试与hyps模型之间的相关性良好。绘制了Hyps和Armstrong-Frederick模型之间的一些评论。

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