首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >Interface Formation and Characterization of Brass/Aluminum Compounds Fabricated Through Die Casting and Semi-Continuous Casting
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Interface Formation and Characterization of Brass/Aluminum Compounds Fabricated Through Die Casting and Semi-Continuous Casting

机译:通过压铸和半连续铸造制造黄铜/铝化合物的界面形成与表征

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摘要

An innovative method based on the static and semi-continuous casting technology is investigated for the production of bilayer brass/aluminum billets and rods. The paper focuses on the interface formation and characterization of metallurgically bonded hybrids consisting of brass CuZn37 and the aluminum alloys AA5083, AA6060 and AA7075. Depending on the thermal process conditions, the interfacial reaction zone between the joining partners exhibits a thickness between a few micrometers and a few millimeters. Regardless of the usage of disparate aluminum alloys, the interface of as-cast brass/aluminum compounds is characterized by four intermetallic layers, namely CuZn (CuZn-beta) as well as an anomalous eutectic area of aluminum solid solution (alpha-Al) and eutectic structures. The intermetallic layers are primarily formed by solid-state diffusion, whereas the anomalous eutectic zone is a result of dissolution of Cu in liquid Al and subsequent solidification and precipitation. The microhardness, elastomechanical properties and the bonding strength of the interfacial area of as-cast compounds are determined using the nanoindentation and push-out testing technique. Due to the high cooling rates, brass/aluminum compounds fabricated through semi-continuous casting are characterized by a sufficient geometrical stability of the interface and high bonding quality.
机译:研究了基于静态和半连铸技术的创新方法,用于生产双层黄铜/铝坯和杆。本文侧重于由黄铜CuzN37和铝合金AA5083,AA6060和AA7075组成的冶金键合杂种的界面形成和表征。取决于热处理条件,连接伴侣之间的界面反应区在几微米和几毫米之间表现出厚度。无论使用不同的铝合金的使用如何,铸造黄铜/铝化合物的界面的特征在于四种金属间层,即Cuzn(Cuzn-β)以及铝固溶体(Alpha-Al)的异常共晶面积和共晶结构。金属间层主要由固态扩散形成,而异常的共晶区域是液体Al中Cu溶解的结果和随后的凝固和沉淀。使用纳米凸缘和推出测试技术测定衍生化合物的界面面积的显微硬度,弹性机械性能和粘合强度。由于高冷却速率,通过半连续铸造制造的黄铜/铝化合物的特征在于界面的足够几何稳定性和高粘接品质。

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