利用直接冷铸法将铝废料重熔成铝棒

IF 0.6 Q4 METALLURGY & METALLURGICAL ENGINEERING Archives of Foundry Engineering Pub Date : 2024-01-04 DOI:10.24425/afe.2024.149250
Kardo Rajagukguk, S. Suyitno, H. Saptoadi, I. Kusumaningtyas, B. Arifvianto, M. Mahardika
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引用次数: 0

摘要

利用直接冷却(DC)铸造法,成功地从铝废料中制备出了直径为 100 毫米的铸坯。本研究旨在探究这种铸坯的微观结构和机械性能。对铸坯半径横截面上的四个位置进行了评估。结果表明,现浇坯的结构是凝固外壳处有一薄层粗柱状晶粒,坯体半径处有羽毛状晶粒,坯体中心处有粗等轴晶粒。晶粒大小从铸坯中心向表面逐渐减小。本研究获得的极限拉伸强度(UTS)和硬度值从铸坯中心到表面略有增加。镁、铁和硅元素在铸坯横截面上的分布不均匀。偏析分析表明,硅在铸坯表面呈负偏析,在中间呈正偏析,在中心呈负偏析。另一方面,镁元素在铸坯横截面上均匀分布,数量很少。
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Remelting of Aluminum Scrap Into Billets Using Direct Chill Casting
An as-cast aluminum billet with a diameter of 100 mm has been successfully prepared from aluminum scrap by using direct chill (DC) casting method. This study aims to investigate the microstructure and mechanical properties of such as-cast billets. Four locations along a cross-section of the as-cast billet radius were evaluated. The results show that the structures of the as-cast billet are a thin layer of coarse columnar grains at the solidified shell, feathery grains at the half radius of the billet, and coarse equiaxed grains at the billet center. The grain size tends to decrease from the center to the surface of the as-cast billet. The ultimate tensile strength (UTS) and the hardness values obtained from this research slightly increase from the center to the surface of the as-cast billet. The distribution of Mg, Fe, and Si elements over the cross-section of the as-cast billet is inhomogeneous. The segregation analysis shows that Si has negative segregation towards the surface, positive segregation at the middle, and negative segregation at the center of the as-cast billet. On the other hand, the Mg element is distributed uniformly in small quantities in the cross-section of the as-cast billet.
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来源期刊
Archives of Foundry Engineering
Archives of Foundry Engineering METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
16.70%
发文量
0
期刊介绍: Thematic scope includes scientific issues of foundry industry: Theoretical Aspects of Casting Processes, Innovative Foundry Technologies and Materials, Foundry Processes Computer Aiding, Mechanization, Automation and Robotics in Foundry, Transport Systems in Foundry, Castings Quality Management, Environmental Protection. Why subscribe and read
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