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首页> 外文期刊>Journal of Metallurgy >Transition in Deformation Mechanism of AZ31 Magnesium Alloy during High-Temperature Tensile Deformation
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Transition in Deformation Mechanism of AZ31 Magnesium Alloy during High-Temperature Tensile Deformation

机译:AZ31镁合金高温拉伸变形过程中变形机理的转变

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摘要

Magnesium alloys can be used for reducing the weight of various structural products, because of their high specific strength. They have attracted considerable attention as materials with a reduced environmental load, since they help to save both resources and energy. In order to use Mg alloys for manufacturing vehicles, it is important to investigate the deformation mechanism and transition point for optimizing the material and vehicle design. In this study, we investigated the transition of the deformation mechanism during the high-temperature uniaxial tensile deformation of the AZ31 Mg alloy. At a test temperature of 523 K and an initial strain rate of3×10−3 s−1, the AZ31 Mg alloy (mean grain size: ~5 μm) exhibited stable deformation behavior and the deformation mechanism changed to one dominated by grain boundary sliding.
机译:镁合金由于其高比强度而可用于减轻各种结构产品的重量。由于它们有助于节省资源和能源,它们作为降低环境负荷的材料已引起了相当大的关注。为了将Mg合金用于制造车辆,研究变形机理和转变点对于优化材料和车辆设计很重要。在这项研究中,我们研究了AZ31 Mg合金在高温单轴拉伸变形过程中变形机理的转变。在523 K的测试温度和3×10−3 s-1的初始应变率下,AZ31 Mg合金(平均粒径:〜5μm)表现出稳定的变形行为,变形机理转变为一种以晶界滑动为主的变形。

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