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Influence of Al2Cu morphology on the incipient melting characteristics in B206 Al alloy

机译:Al2Cu形态对B206 Al合金初期熔化特性的影响

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摘要

Prevention of incipient melting during solution heat treatment is critical for precipitation hardenable alloys such as B206, since it is deleterious to mechanical properties. For this reason, hot-stage laser scanning confocal microscopy (LSCM) was used for in-situ characterization of incipient melting of blocky Al2Cu and Al-Al2Cu eutectic during transient heating of B206 Al alloy to determine the mechanisms of melting. Microstructural analysis was carried out prior to and following the LSCM experiments using SEM and EDX. The results suggest that the blocky Al2Cu particles gradually developed a rough surface comprised of small spheres of locally melted material in small regions around the particle, followed by complete particle melting. In contrast, the globular Al-Al2Cu eutectic clusters melted completely which was followed by a rapid propagation of liquid film on the sample surface. Following incipient melting, the microstructure consisted mainly of coarse Al-Cu bearing eutectic, small quantities of blocky Al2Cu particles and oxides along grain boundaries. (C) 2018 Elsevier B.V. All rights reserved.
机译:在溶液热处理期间预防初始熔化对于沉淀硬化合金如B206,诸如B206的沉淀性熔化至关重要,因为它对机械性能有害。因此,热级激光扫描共聚焦显微镜(LSCM)用于在B206 al合金的瞬态加热过程中诱导嵌段Al2Cu和Al-Al2Cu共晶的原位表征,以确定熔化的机制。使用SEM和EDX在LSCM实验之前和之后进行微结构分析。结果表明,嵌段的Al2Cu颗粒逐渐显影了由颗粒周围的小区域中的局部熔化材料的小球体构成的粗糙表面,然后完成颗粒熔化。相反,球状Al-Al 2Cu共晶簇完全熔化,然后在样品表面上进行液体膜的快速繁殖。在初始熔化之后,微观结构主要由粗糙的Al-Cu轴承共晶,少量嵌块Al2Cu颗粒和沿晶界氧化物组成。 (c)2018年elestvier b.v.保留所有权利。

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