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Influence of Cu on the mechanical properties of an Al-4.4wtMg alloy after ECAP

机译:Cu对ECAP后Al-4.4wt%Mg合金机械性能的影响

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Two Aluminium alloys, type AA5182 and AA5182+1.2wt% Cu, have been studied. The second alloy in solution treated condition is 18% stronger than the first one. During ageing at 150°C or 200°C it shows a characteristic fast increase in yield strength during the first minutes of ageing, followed by a 'plateau'. Both materials have been deformed in an ECAP die (4 and 8 passes) at 200°C and the microstructure, hardness and mechanical properties in compression at room temperature have been investigated. Although in none of the two materials a true sub-micron grain size was obtained at 200°C, a fair combination of strength and strain hardening was observed. The AA5182+Cu alloy, when ECAP'ed after a solution treatment and quenching, shows an increase in strength of about 20% compared to the AA5182 reference alloy. A post-ECAP annealing at 200°C does not lead to a further increase in hardness or strength. An analysis of the substructure and the mechanical properties during ECAP led to the conclusion that the precipitates formed during ECAP at 200°C do not directly contribute to the higher strength of alloy AA5182+Cu, but they contribute indirectly by slowing down the recovery.
机译:研究了两个铝合金AA5182和AA5182 + 1.2wt%Cu。溶液处理条件下的第二合金比第一个合金为18%。在150°C或200℃时,在老化期间,它显示出在老化的第一分钟内屈服强度的特征快速增加,然后是“平台”。在200℃下,两种材料在ECAP模具(4和8次通过)中已经研究了室温下压缩中的微观结构,硬度和机械性能。虽然在两种材料中没有,但在200℃下获得真正的亚微米晶粒尺寸,但观察到强度和应变硬化的公平组合。与AA5182参考合金相比,AA5182 + Cu合金,当溶液处理和淬火后,显示出约20%的强度增加。 200°C的ECAP退火不会导致硬度或强度的进一步增加。对模拟期间的分析和ECAP期间的机械性能导致结论,在200℃的ECAP期间形成的沉淀物不会直接导致合金AA5182 + Cu的较高强度,但它们通过减慢恢复而间接贡献。

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