热撕裂敏感性的关键概念:控制扩散凝固如何实现变形铝合金的异型铸造

M. Pourgharibshahi, H. Saghafian, M. Divandari, Farrokh Golestannejad
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引用次数: 1

摘要

采用约束杆铸造法(CRC)和控制扩散凝固法(CDS)研究了AA 7068铝合金的热撕裂敏感性。考虑铸件设计和不同的喂料机构,对实测热撕裂曲线进行了精确分析。采用扫描电镜对热撕裂表面进行了研究。研究发现,共晶液在成膜阶段的凝固和固相喂入现象对热撕裂的形成有强烈的影响。由于低的反向扩散速率,在初级相上早期形成了吸收共晶层,这可以解释薄膜阶段延展性的损失。该层可以作为共晶形核和生长的有效基体,因此它的形成可以促进共晶凝固。液体共晶的部分凝固隔离导致固体进料应力的发展,破坏了固体共晶,并提供了所需的撕裂引发剂。通过提高反扩散速率,CDS工艺避免了吸附固相层的形成,从而延缓了共晶凝固,从而降低了热撕裂敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Critical Conception of Hot-Tearing Susceptibility: How Controlled Diffusion Solidification Enables Shape-Casting with Wrought Aluminum Alloys
Instrumented Constrained Rod Casting (CRC) method and the Controlled Diffusion Solidification (CDS) process were used to study the high susceptibility of the aluminum alloy AA 7068 to hot-tearing. A precise analysis of the measured hot-tearing curves is provided considering the casting design and different feeding mechanisms. Scanning Electron Microscopy was used to study the hot-tear surfaces. It was found that the solidification of the eutectic liquid at the film stage and the phenomenon of solid-feeding strongly affects the hot-tear formation. The early formation of an absorbed eutectic layer on the primary phase due to low rate of back-diffusion is proposed to explain the loss of ductility at the film stage. The layer can serve as an efficient substrate for the eutectic nucleation and growth, hence its formation can advance the eutectic solidification. The isolation of liquid eutectic by its partial solidification results in development of solid-feeding stresses breaking the solid eutectic and provide the required tearing initiators. By increasing the back-diffusion rate, the CDS process avoids formation of the adsorbed solid layer which postpones eutectic solidification and thereby mitigating the hot-tearing susceptibility.
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