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Temperature Dependence of Tensile Elongation in a Mechanically Milled, P/M Al-Mg-Cu Alloy

机译:机械研磨的P / M Al-Mg-Cu合金中拉伸伸长率的温度依赖性

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摘要

A mechanically milled and thermo-mechanically treated Al-1.1Mg-1.2Cu (at%) alloy exhibits superplastic elongation at an intermediate temperature of 748K, neither at higher nor lower temperatures, and a large portion of total elongation is accounted for by the grain deformation. Computer simulation of stress-strain behavior from a viewpoint of dislocation dynamics indicates that a combination of the largest re-mobilization probability of immobile dislocations, the highest mobile dislocation density and the modest immobilization rate of dislocations is responsible for the largest elongation at 748K.
机译:经过机械研磨和热机械处理的Al-1.1Mg-1.2Cu(at%)合金在748K的中温下(无论在较高还是较低的温度下)均表现出超塑性伸长率,而总伸长率的很大一部分是由晶粒引起的形变。从位错动力学的角度对应力-应变行为的计算机模拟表明,最大的不动位错再移动概率,最高的位错密度和适度的位错固定化率共同导致了748K的最大伸长率。

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