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Refinement of Solidification Microstructures by the MCAST Process

机译:通过MCAST工艺细化凝固组织

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MCAST (melt conditioning by advanced shear technology) is a novel processing technology developed recently for conditioning liquid metal under intensive forced convection prior to solidification processing. The MCAST process uses a twin screw mechanism to impose a high shear rate and a high intensity of turbulence to the liquid metal, so that the conditioned liquid metal has uniform temperature, uniform chemical composition and well-dispersed and completely wetted oxide particles with a fine size and a narrow size distribution. The microstructural refinement is achieved through an enhanced heterogeneous nucleation rate and an increased nuclei survival rate during the subsequent solidification processing. In this paper we present the MCAST process and its applications for microstructural refinement in both shape casting and continuous casting of light alloys. Discussions will be made on the effect of intensive forced convection on the enhanced heterogeneous nucleation. The concept of physical grain refinement will be proposed and discussed in contrast to the conventional chemical grain refinement by addition of grain refiners.
机译:MCAST(通过先进的剪切技术进行熔体调节)是最近开发的一种新型加工技术,用于在凝固过程之前在强力对流条件下调节液态金属。 MCAST工艺使用双螺杆机制对液态金属施加高剪切速率和高湍流强度,从而使经过调节的液态金属具有均匀的温度,均匀的化学成分以及分散良好且完全润湿的氧化物颗粒,并具有良好的细度。尺寸和狭窄的尺寸分布。通过在随后的凝固过程中提高异相成核速率和提高成核率来实现微结构的细化。在本文中,我们介绍了MCAST工艺及其在轻合金的形状铸造和连续铸造中的微观组织细化应用。将讨论强力对流对增强异质成核的影响。与通过添加晶粒细化剂的常规化学晶粒细化相反,将提出和讨论物理晶粒细化的概念。

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