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Variation of nanoparticle fraction and compositions in two-stage double peaks aging precipitation of Al−Zn−Mg alloy

机译:Al-Zn-Mg合金的两阶段双峰时效沉淀中纳米粒子分数和组成的变化

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摘要

Atom probe tomography (APT) coupling high-resolution transmission electron microscopy (HRTEM) was used to analyze the fraction and compositions of different nanoparticles in two-stage double peaks aging process of Al−Zn−Mg alloy. Al content is found to be closely related to the size of nanoparticles and it can be greater than ~ 50.0 at. % in the nanoparticle with the equivalent radius under ~ 3.0 nm. Correspondingly, Al content of the nanoparticle, with the equivalent radius over ~ 5.0 nm, is measured under ~ 40.0 at. %. Evolution from Guinier–Preston (G.P.) zone to η phase is a growing process where Mg and Zn atoms enter the nanoparticle, therefore rejecting Al atoms. G.P. zones can take up a number fraction of ~ 85.0 and ~ 22.7% of nanoparticles in the first and second peak-aged samples, respectively, and even in the over-aged (T73) sample, they can still be found. As aging time increases, fraction of η′ phases monotonically rises to the peak value (~ 54.5%) in the second peak-aged state and then drops, which is significant for the second hardness peak and directly proves their function as the transitional medium. In T73 state, ~ 63.3% nanoparticles compose of η phases, which were measured to still contain ~ 10.2 to ~ 36.4 at. % Al atoms.
机译:原子探针层析成像(APT)耦合高分辨率透射电子显微镜(HRTEM)用于分析Al-Zn-Mg合金两阶段双峰时效过程中不同纳米颗粒的含量和组成。发现铝含量与纳米粒子的尺寸密切相关,并且可以大于〜50.0 at。等效半径在〜3.0 nm以下的纳米粒子中的百分比。相应地,在〜40.0 at下测量等效半径超过〜5.0 nm的纳米粒子的Al含量。 %。从吉尼尔-普雷斯顿(G.P.)区到η相的演化是一个增长过程,其中Mg和Zn原子进入纳米粒子,因此排斥Al原子。 G.P.在第一个峰龄和第二个峰龄样品中,这些区域分别占据了约85.0%和约22.7%的纳米颗粒,即使在超龄(T73)样品中,仍然可以找到它们。随着时效时间的增加,η'相的分数在第二个峰值时效状态下单调上升至峰值(约54.5%),然后下降,这对于第二个硬度峰意义重大,并直接证明了它们作为过渡介质的功能。在T73状态下,约有63.3%的纳米粒子由η相组成,据测量在η相中仍含有约10.2至36.4。 Al原子百分比。

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