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Dynamic Deformation Behaviour and Dislocation Substructure of AZ80 Magnesium Alloy over a Wide Range of Temperatures

机译:宽温度范围内AZ80镁合金的动态变形行为和位错亚结构

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The high strain rate deformation behaviour and dislocation substructure of AZ80 magnesium alloy are investigated at strain rates of 8x102 s-1, 1.5x103 s-1 and 2.2x103 s-1 and temperatures of-100 oC, 25 oC and 300 oC using a compressive split-Hopkinson pressure bar system. The flow stress, work hardening coefficient, strain rate sensitivity and temperature sensitivity all increase with increasing strain rate or decreasing temperature. Moreover, the dynamic deformation behaviour is well described by the Zerilli-Armstrong hcp constitutive equation. Transmission electron microscopy observations show that the dislocation density increases with a higher strain rate or a lower temperature. Finally, the flow stress varies linearly with the square root of the dislocation density in accordance with the Bailey-Hirsch model.
机译:使用压缩压力研究了AZ80镁合金在8x102 s-1、1.5x103 s-1和2.2x103 s-1的应变速率以及100 oC,25 oC和300 oC的温度下的高应变率变形行为和位错亚结构。分裂式霍普金森压力杆系统。流动应力,加工硬化系数,应变率敏感性和温度敏感性均随应变率增加或温度降低而增加。此外,Zerilli-Armstrong hcp本构方程很好地描述了动态变形行为。透射电子显微镜观察表明,位错密度随着较高的应变速率或较低的温度而增加。最终,流变应力根据Bailey-Hirsch模型随位错密度的平方根线性变化。

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