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首页> 外文期刊>Materials transactions >Microstructural Evolution in ZK60 Magnesium Alloy during Severe Plastic Deformation
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Microstructural Evolution in ZK60 Magnesium Alloy during Severe Plastic Deformation

机译:ZK60镁合金在严重塑性变形过程中的组织演变

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A ZK60 alloy was subjected to severe plastic deformation by torsion straining under high pressure at ambient temperature. The data of microhardness measurements, X-ray analysis and TEM observation showed that intense plastic straining resulted in formation of nanometer-scale structure characterized by presence of high internal Stress fields. The effect of phase composition of the magnesium alloy on the formation of ultrafine grain structure was examined. It was shown that prior aging promoted the formation of fully grained structure during severe plastic deformation. At the same time, the size of new grains formed was found to be smaller in the quenched state of the magnesium alloy than in the aged state. Grain formation during intense plastic straining was interpreted in terms of low temperature dynamic recrystallization. The mechanisms of ultrafine grain structure formation in hcp material during severe plastic deformation and the role of non-basal slip in this process are discussed.
机译:ZK60合金在环境温度下在高压下会因扭力应变而发生严重的塑性变形。显微硬度测量,X射线分析和TEM观察的数据表明,强烈的塑性应变导致形成了以高内部应力场为特征的纳米级结构。研究了镁合金的相组成对超细晶粒结构形成的影响。结果表明,在严重的塑性变形过程中,先验时效促进了全晶粒结构的形成。同时,发现在镁合金的淬火状态下形成的新晶粒的尺寸小于在时效状态下形成的新晶粒的尺寸。用低温动态重结晶来解释强烈塑性应变过程中的晶粒形成。讨论了hcp材料在严重塑性变形过程中超细晶粒结构形成的机理以及非基层滑移在此过程中的作用。

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