首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of Al-3 wt% Al2O3 master alloy fabricated by calcined kaolin on grain refinement and mechanical properties of A356 alloy
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Effect of Al-3 wt% Al2O3 master alloy fabricated by calcined kaolin on grain refinement and mechanical properties of A356 alloy

机译:Al-3wt%Al2O3母合金由煅烧高岭土制备的Al-3wt%Al2O3母合金对A356合金的晶粒细化和机械性能的影响

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摘要

In the present study, Al-3 wt% Al2O3 master alloy was successfully prepared by the reaction between calcined kaolin and aluminum melt, combined with mechanical stirring and high-energy ultrasonic dispersion technology. The gamma-Al2O3 particles produced by the reaction are uniformly dispersed in the matrix, and the average size of gamma-Al2O3 is about 65 nm. The refinement effect of Al-3 wt% Al2O3 master alloy on A356 alloy was studied. It was found that the a-Al grain size in A356 alloy refined by Al-3 wt% Al2O3 master alloy was decreased from 980 +/- 155 mu m to 337 +/- 95 mu m. Compared with the Al-5Ti-1B master alloy, Al-3 wt% Al2O3 has a higher refinement efficiency. In addition, the refinement efficiency of the Al-3 wt% Al2O3 master alloy will not fade within 60 min. Transmission electron microscope analysis showed that the orientation relationship between gamma-Al(2)O(3 )and Al was (22-2)(gamma-Al2O3)[011](gamma-Al2O3)//(11-1)(Al)[011](Al), which demonstrated that gamma-Al2O3 could be used as heterogeneous nucleation sites to refine alpha-Al grains. Moreover, the tensile properties of A356 alloy had been significantly improved. (C) 2021 Elsevier B.V. All rights reserved.
机译:本研究通过煅烧高岭土与铝熔体的反应,结合机械搅拌和高能超声分散技术,成功制备了Al-3wt%Al2O3中间合金。反应生成的γ-Al2O3颗粒均匀分散在基体中,γ-Al2O3的平均粒径约为65nm。研究了Al-3 wt%Al2O3中间合金对A356合金的细化效果。结果表明,用Al-3 wt%Al2O3中间合金细化的A356合金中的α-Al晶粒尺寸从980+/-155μm减小到337+/-95μm。与Al-5Ti-1B中间合金相比,Al-3 wt%Al2O3具有更高的细化效率。此外,Al-3 wt%Al2O3中间合金的细化效率在60分钟内不会下降。透射电子显微镜分析表明,γ-Al(2)O(3)和Al之间的取向关系为(22-2)(γ-Al2O3)[011](γ-Al2O3)/(11-1)(Al)[011](Al),这表明γ-Al2O3可以作为异质形核点来细化α-Al晶粒。此外,A356合金的拉伸性能也得到了显著改善。(c)2021爱思唯尔B.V.保留所有权利。

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