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In Situ Analysis of Incipient Melting in a Novel High Strength Al-Cu Cast Alloy Using Laser Scanning Confocal Microscopy (LSCM)

机译:使用激光扫描共聚焦显微镜(LSCM)对新型高强度Al-Cu铸造合金中的初熔进行原位分析

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Incipient melting in a novel Al-Cu alloy was investigated. Overheating during heat treatment leads to incipient melting thereby compromising mechanical properties. Advanced microscopy and real-time imaging techniques such as high-temperature LSCM enable a direct in situ observation of incipient melting and phase transformations. Hence, isothermal analysis was carried out using LSCM at elevated temperatures to analyze incipient melting with time. The predominant phase of this alloy was Al_2Cu in both blocky and eutectic morphologies. The results showed that incipient melting was accompanied by a clustering of liquid droplets followed by a complete melting of Al_2Cu at approximately 548 °C. The in situ analysis also revealed that eutectic Al-Al_2CU was found to melt prior to blocky Al_2CU. Further, localized melting was also observed to occur at a random sequence. As a result of incipient melting, the microstructure consisted of a proliferation of defects such as brittle ultra-fine eutectic clusters and porosity.
机译:研究了新型Al-Cu合金中的初熔。热处理过程中的过热会导致初期熔化,从而损害机械性能。先进的显微镜和实时成像技术(例如高温LSCM)可实现对初始熔融和相变的直接原位观察。因此,在高温下使用LSCM进行了等温分析,以分析随时间的初期熔化。该合金的主要相为块状和共晶形态的Al_2Cu。结果表明,初期熔化伴随着液滴的聚集,随后在约548°C的温度下Al_2Cu完全熔化。原位分析还表明,共晶Al-Al_2CU被发现先于块状Al_2CU熔化。此外,还观察到以随机顺序发生局部熔化。初期熔化的结果是,微观结构包括缺陷的扩散,例如脆性的超细共晶簇和孔隙率。

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