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Manufacturing slurry and rheocasting of hypereutectic Al-Si-Cu-Mg alloy

机译:过共晶Al-Si-Cu-Mg合金的制造浆液和流变铸造

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Both rapid and stable semi-solid slurry preparation of hypereutectic Al-14.8%Si-4.5%Cu-1.1%Mg alloy (in mass%) with fine solid granules as well as finely dispersed primary silicon particles was tried using a simple method newly developed, where the low-superheat melt passes through a gap between a rotating regular octagonal rotor and a circumscribed chill block. By examining effects of melt temperature running out from tundish, gap distance and rotational speed of rotor on solidification structure of the semi-solid slurry manufactured, the optimum making condition of the targeted semi-solid slurry was found out. Mean sizes of solid granules and primary silicon particles within the slurry, which had been made quickly with the good reproducibility, were 45μm and 20μm, respectively. Subsequently the obtained semi-solid slurries were rheocast into a cylindrical shape cavity by the use of a high pressure casting machine. It has been shown that the rheocast samples have peak hardness value between the gravity casting and the hot-extrusion, but a good age-hardenability somewhat higher than that of gravity casting.
机译:使用新开发的一种简单方法,尝试了快速,稳定的半共晶Al-14.8%Si-4.5%Cu-1.1%Mg合金(质量%),细固体颗粒以及细分散的初生硅颗粒的制备。低过热熔体通过旋转的正八角形转子和外接冷却块之间的间隙。通过考察中间包中熔体温度的变化,间隙距离和转子的转速对所制造的半固态浆料的凝固组织的影响,找到了目标半固态浆料的最佳制备条件。快速制得的具有良好重现性的浆料中固体颗粒和原生硅颗粒的平均尺寸分​​别为45μm和20μm。随后,通过使用高压铸造机将获得的半固体浆液流铸成圆柱形腔。已经表明,流变铸件在重力铸造和热挤压之间具有峰值硬度值,但是良好的时效硬化性略高于重力铸造。

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