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Aging behaviour of Al-Cu-Mg alloy-SiC composites

机译:Al-Cu-Mg合金-SiC复合材料的时效行为

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摘要

The age-hardening kinetics of powder metallurgy processed Al-Cu-Mg alloy and composites with 5, 15 or 25 vol.% SiC reinforcements, subjected to solution treatment at 495 ℃ for 0.5 h or at 504 ℃ for 4h followed by aging at 191 ℃, have been studied. The Al-SiC interfaces in composites show undissolved, coarse intermetallic precipitates rich in Cu, Fe, and Mg, with its extent varying with processing conditions. Examination of aging kinetics indicates that the peak-age hardness values are higher, and the time taken for peak aging is an hour longer on solutionizing at 504 ℃ for 4 h, due to greater solute dissolution. Contrary to the accepted view, the composites have taken longer time to peak-age than the alloy, probably due to lower vacancy concentration, large-scale interfacial segregation of alloying elements, and inadequate density of dislocations in matrix. The composite with 5 vol.% SiC with the lowest inter-particle spacing has shown the highest hardness.
机译:粉末冶金处理的Al-Cu-Mg合金及具有5、15或25 vol%SiC增强材料的复合材料的时效硬化动力学,在495℃下固溶处理0.5 h或在504℃固溶处理4h,然后在191时效℃,已有研究。复合材料中的Al-SiC界面显示出富含Cu,Fe和Mg的未溶解的粗大金属间沉淀物,其程度随加工条件而变化。老化动力学的研究表明,由于溶质的溶解更大,在504℃固溶4 h时,峰值时效硬度值更高,并且峰值时效时间延长了一个小时。与公认的观点相反,复合材料达到峰值时效的时间比合金更长,这可能是由于空位浓度降低,合金元素的大规模界面偏析以及基体中位错密度不足所致。 SiC含量为5%(体积)且颗粒间间距最低的复合材料具有最高的硬度。

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