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首页> 外文期刊>Materials transactions >Effects of Solute Fe, Zn and Mg on Recrystallization in Aluminum
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Effects of Solute Fe, Zn and Mg on Recrystallization in Aluminum

机译:溶质中铁,锌和镁对铝中再结晶的影响

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In this work, the effects of solute Fe, Zn, and Mg on the suppression of recrystallization in Al are studied. The materials are Al-22.2 atomic parts per million (at ppm) Fe, Al-53.6 at ppm Fe, Al-0.1 at% Mg, Al-1.1 at% Mg, Al-0.1 at% Zn, and Al-3.0 at% Zn. All were synthesized using high-purity starting materials. The amount of impurities other than the additional elements is less than a few ppm. The variation in the Vickers hardness with annealing time after isothermal annealing treatments at various temperatures is measured. The results of the isothermal annealing treatments are discussed in terms of the Johnson-Mehl-Avrami-Kolmogorov (JMAK) equation. The effect of the suppression of recrystallization per concentration unit is highest for Fe, less so for Mg, and least for Zn. The values of the apparent activation energy for recrystallization are calculated as: 139, 146, 63, 66, 47.7, and 67 kJ/mol for Al-22.2 at ppm Fe, Al-53.6 at ppm Fe, Al-0.1 at% Mg, Al-1.1 at% Mg, Al-0.1 at% Zn, and Al-3.0 at% Zn, respectively. The values of the apparent activation energy for recrystallization are close to the values of the activation energy for grain boundary diffusion in the same alloy systems.
机译:在这项工作中,研究了溶质Fe,Zn和Mg对抑制Al中再结晶的影响。这些材料是Al-22.2原子百万分之一(ppm)Fe,Al-53.6 at ppm Fe,Al-0.1 at%Mg,Al-1.1 at%Mg,Al-0.1 at%Zn和Al-3.0 at%锌全部使用高纯度起始原料合成。除附加元素以外的杂质的量小于几ppm。在各种温度下进行等温退火处理后,测量维氏硬度随退火时间的变化。根据Johnson-Mehl-Avrami-Kolmogorov(JMAK)方程讨论了等温退火处理的结果。对于Fe,每浓度单位抑制再结晶的效果最高,对于Mg则较小,而对于Zn最小。用于重结晶的表观活化能的值计算如下:Al-22.2在ppm Fe时,Al-53.6在ppm Fe,Al-0.1 at%Mg,139,146,63,66,47.7和67 kJ / mol。 Al-1.1原子%的Mg,Al-0.1原子%的Zn和Al-3.0原子%的Zn。在相同合金体系中,用于再结晶的表观活化能的值接近于用于晶界扩散的活化能的值。

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