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Fatigue of extruded AZ31B magnesium alloy under stress- and strain-controlled conditions including step loading

机译:挤压AZ31B镁合金在应力和应变控制条件下(包括阶梯载荷)的疲劳

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摘要

Fatigue of extruded AZ31B magnesium alloy under stress- and strain-controlled loading conditions was investigated. The experimental program included uniaxial and axial-torsion tests conducted under constant amplitude loading and step loading. Observed fatigue lives and cracking orientations were used to evaluate two critical plane multiaxial fatigue criteria, namely, the Jiang criterion and the Fatemi-Socie criterion. The Jiang criterion is found to give satisfactory fatigue life predictions and a reasonable description of the cracking behavior. The Fatemi-Socie criterion provides a similar performance for most of the loading cases. For some of the uniaxial stress-controlled experiments, the fatigue life and early cracking predictions by the Fatemi-Socie criterion do not agree well with the experimental results. A discussion on the implications of stress-controlled loading conditions to fatigue modeling is presented. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了在应力和应变控制的加载条件下挤压的AZ31B镁合金的疲劳。实验程序包括在恒定振幅载荷和阶梯载荷下进行的单轴和轴向扭转测试。观察到的疲劳寿命和裂纹取向被用于评估两个临界平面多轴疲劳准则,即江准则和法蒂米-社会准则。江准则被发现可以给出令人满意的疲劳寿命预测和开裂行为的合理描述。 Fatemi-Socie准则为大多数加载情况提供了类似的性能。对于某些单轴应力控制实验,根据Fatemi-Socie准则进行的疲劳寿命和早期裂纹预测与实验结果不太吻合。讨论了应力控制加载条件对疲劳建模的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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