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Hardening and Defect Structures in Thermomechanically Processed Al-2.5Cu-1.5Mg (wt. percent) Alloy

机译:热机械加工Al-2.5Cu-1.5mg(wt.%)合金中的硬化和缺陷结构

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The effect of thermomechanical processing on the hardening and defect structure of an Al-2.5Cu-1.5Mg (wt. percent) alloy has been examined using hardness measurements and transmission electron microscopy. The rapid age-hardening reaction, which is known to contribute approx 70 percent of the total hardening response of the alloy, was found to be higher than that arising from up to 3 percent rolling. Comparisons between the hardening arising from a processing sequence involving ageing/deformation/ageing were shown to be slightly higher than those where deformation immediately follows after the quench. The defect structure produced from these two processing routes was distinctly different such that dislocation loops and helices predominate in samples aged prior to deformation. Alternatively, the dislocation tangles introduced when deformation is the initial step after quenching persist throughout subsequent ageing and restrict the growth of loops and helices.
机译:使用硬度测量和透射电子显微镜检查了热机械加工对Al-2.5Cu-1.5mg(WT.%)合金的硬化和缺陷结构的影响。发现快速的硬化反应,已知贡献合金的总硬化响应的约70%,从多达3%轧制得出。由涉及老化/变形/老化的加工序列产生的硬化之间的比较显示略高于在淬火后立即跟随变形的那些。由这两个处理路线产生的缺陷结构明显不同,使得位错环和螺旋在变形之前老化的样品中占主导地位。或者,当变形是在整个后续的老化后持续存在后的初始步骤并限制环和螺旋的生长后,脱位缠结呈现。

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