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首页> 外文期刊>Journal of surface investigation: x-ray, synchrotron and neutron techniques >Changes in the Structure and Microhardness of Rapidly Solidified Foils of Aluminum Alloy 1421 during Their Annealing
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Changes in the Structure and Microhardness of Rapidly Solidified Foils of Aluminum Alloy 1421 during Their Annealing

机译:退火过程中铝合金快速固化箔结构和微硬度的变化

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摘要

In this work, the relationship between the microstructure and microhardness of Al–Mg–Li–Zr–Sc alloy (1421 Al) prepared by ultrafast quenching from the melt has been studied. The following methods are used in studying the rapidly solidified (RS) alloy: scanning electron microscopy integrated with energy dispersive X-ray microanalysis, the method of nuclear reaction analysis, and the measurement of microhardness changes during isochronal annealing. The intercept method is applied to determine the size of secondary phases, their volume fraction, and the specific surface area of the interface boundaries in the samples. It is established that the as-quenched rapidly solidified alloy foils are composed of an aluminum-based supersaturated solid solution. It is found that lithium, the content of which reaches 9.0 at %, is unevenly distributed over the subsurface region of foils. After annealing at 300°C, precipitates of (Sc, Zr)-containing phase are detected in the structure of foils in addition to magnesium-containing phases. Nonmonotonic changes in the microhardness are observed during isochronal annealing of the foils in the temperature ranges of 50–100°C, 150–210°C, 230–340°C, which are associated with the precipitation of metastable and stable phases. It is found that heating of the alloy foils to 340°C leads to an increase in the microhardness by 23%, and a sharp decrease in the microhardness takes place at temperatures above 400°C.
机译:在这项工作中,研究了通过超薄淬火制备的Al-Mg-Li-Zr-SC合金(1421 Al)的微观结构和微硬度之间的关系已经研究过熔体。以下方法用于研究快速凝固的(RS)合金:扫描电子显微镜与能量分散X射线微分析,核反应分析方法,以及在等时退火过程中的显微硬度变化。应用截距方法以确定样品中界面阶段,体积分数和界面边界的比表面积的尺寸。建立了尽可能淬火的快速凝固的合金箔由铝基过饱和固溶体组成。结果发现,锂,其含量达到9.0at%,在箔的地下区域上不均匀地分布。在300℃下退火后,除了含镁相的相外,在箔的结构中检测到(SC,Zr)的沉淀物。在50-100℃,150-210℃,230-340℃,230-340℃的温度范围内的箔的等时退火期间观察到显微硬度的非单调变化,这与亚稳态和稳定阶段的沉淀相关。发现合金箔加热至340℃导致显微硬度的增加23%,微硬度急剧下降在400℃高于400℃的温度下进行。

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