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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >The Flow Behavior Modeling of AZ61 Magnesium Alloy at Elevated Temperatures Considering the Effects of Strain Rate and Grain Size
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The Flow Behavior Modeling of AZ61 Magnesium Alloy at Elevated Temperatures Considering the Effects of Strain Rate and Grain Size

机译:考虑应变速率和晶粒尺寸影响的AZ61镁合金在高温下的流动行为建模

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摘要

In this study, the hot deformation behavior of a magnesium alloy was investigated under various process conditions Tensile testing experiments were performed to determine the effects of temperature, strain, and strain rate on the flow stress of the material. A new constitutive model was established to characterize the dynamic recrystallization of the magnesium alloy at elevated temperatures. The critical strain was evaluated based on the temperature-compensated strain rate to consider the work softening. The amount of high temperature softening due to dynamic recovery and dynamic recrystallization was formulated as a function of strain, strain rate, and temperature. It was demonstrated that the proposed model is able to predict the flow softening as well as the growing strain hardening of the material very accurately. The failure characteristics were also studied at different temperatures and strain rates Finally, the grain size effect on the flow behavior of the material was discussed.
机译:在这项研究中,研究了镁合金在各种工艺条件下的热变形行为。进行了拉伸测试实验,以确定温度,应变和应变速率对材料流动应力的影响。建立了一个新的本构模型来表征镁合金在高温下的动态再结晶。基于温度补偿应变率评估临界应变,以考虑功软化。将动态恢复和动态再结晶引起的高温软化量公式化为应变,应变速率和温度的函数。结果表明,所提出的模型能够非常准确地预测材料的流动软化以及应变增长。还研究了在不同温度和应变速率下的破坏特性。最后,讨论了晶粒尺寸对材料流动性能的影响。

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