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Microstructure and High Temperature Deformation of Grain Refined Al Alloy Foil Fabricated by RF Magnetron Sputtering

机译:RF磁控溅射制造的晶粒精制Al合金箔的微观结构和高温变形

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The present paper describes microstructure and mechanical properties of a grain refined Al alloy foils fabricated by RF magnetron sputtering method utilizing a commercial 7475Al alloy as a sputtering target. Microstructure of deposited foils was evaluated by means of SEM, TEM, SEM-EPMA and X-ray diffraction methods. Mechanical properties were analyzed by the Vickers hardness test and by tensile test at various temperatures. Columnar grains having a mixed grain size ranging from some hundreds microns to 1 micron on the planar section was obtained, and the foils were super-saturated solid solution with FCC structure. The foils contained less Mg content than the sputtering target. Superplastic deformation was observed for the foils at elevated temperature and the maximum elongation of 370% was obtained when deformed at 863K with the initial strain rate of 1.4 x 10~(-1)s~(-1).
机译:本文描述了利用商用7475Al合金作为溅射靶的RF磁控溅射法制造的晶粒精制Al合金箔的微观结构和机械性能。通过SEM,TEM,SEM-EPMA和X射线衍射方法评估沉积箔的微观结构。通过维氏硬度试验和各种温度的拉伸试验分析机械性能。获得的柱状晶粒的柱状晶粒在平面部分上的数百微米到1微米到1微米,并且箔是具有FCC结构的超饱和固溶溶液。箔含有比溅射靶含量较少的含量。对于升高温度下的箔,观察到超塑性变形,当在863K时变形时,获得370%的最大伸长率,初始应变率为1.4×10〜( - 1)〜(1)。

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