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Si元素对高Cu/Mg比Al-Cu-Mg合金析出行为的影响

he effect of Si on precipitation in Al-Cu-Mg alloy witha high Cu/Mg ratio

中文摘要英文摘要

本文利用高角度环形暗场扫描透射电子显微镜系统研究了Al-5.0Cu-0.3Mg (wt.%) 合金和 Al-5.0Cu-0.3Mg-0.3Si (wt.%) 合金的析出序列,通过对比阐述Si元素的添加对合金析出的影响。本文详细表征了含Si合金180℃单级时效时θ′(Al2Cu)的析出序列,发现θ′在Q″相的异质形核是时效早期较快的时效动力学及较高硬度的主要原因。Q″相可以有效限制θ′相的粗化,使绝大部分θ′相的厚度仅为2cθ′,并且在时效后期也不会明显粗化。析出相的厚度分布对Al-Cu-Mg-(Si)合金时效后期的机械性能影响不大。

he precipitations in an Al-5.0Cu-0.3Mg (wt.%) alloy and an Al-5.0Cu-0.3Mg-0.3Si (wt.%) alloy have been systematically investigated by high-angle annular dark-field scanning transmission electron microscopy. The results are compared to clarify the effect of Si addition. The nucleation and growth process of θ′(Al2Cu) phase in Si-containing alloy during isothermal ageing at 180 ℃ is revealed in detail. The formation of Q″-type precipitates, on which the θ′ precursors nucleate heterogeneously, contributes to the considerable increase in the ageing kinetics and higher strength at the early ageing stage. The thickening of the θ′ precipitate is largely confined due to the rather small size of fine Q″-type precipitate. As a result, a large proportion of θ′ phase precipitates possess a specific thickness of 2cθ′ and change slightly during the entire observed duration of ageing. The θ′ growth mechanism distinct from the Al-Cu-Mg alloy finally leads to a refined θ′ morphology regarding the thickness and aspect ratio (diameter/thickness). As is counterintuitive, the θ′precipitate thickness distribution is demonstrated to have little effect on the mechanical property steadiness at the late ageing stage of the Al-Cu-Mg-(Si) alloys.

刘路、牛凤姣、周斌、伍翠兰、陈江华

有色金属冶炼

材料物理与化学l-Cu-Mg合金时效硬化析出行为透射电镜

Materials physics and chemistryAl-Cu-Mg alloysAge hardeningPrecipitationTransmission electron microscopy

刘路,牛凤姣,周斌,伍翠兰,陈江华.Si元素对高Cu/Mg比Al-Cu-Mg合金析出行为的影响[EB/OL].(2017-05-17)[2025-08-05].http://www.paper.edu.cn/releasepaper/content/201705-1089.点此复制

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