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Numerical Modeling of the Coupled Electromagnetic and Thermal Fields in the Controlled Solidification Process

机译:控制凝固过程中耦合电磁和热场的数值模型

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This paper presents the numerical modeling of the coupled electromagnetic and thermal fields for a controlled solidification process. First, the raw material, siluminum, is heated till the melting point, obtaining a homogenous liquid using electromagnetic stirring. Next, through several steps, the crucible is lower with a constant speed from the inductor into the cooling system. Thus, we obtain a controlled cooling of the material in the crucible, leading to a homogenous internal structure of the material, without impurities or internal stresses. The numerical modeling of the solidification process is divided into four steps, one for heating, two for heating and cooling and one only for cooling.
机译:本文介绍了控制凝固过程的耦合电磁和热场的数值模型。首先,原料,硅铝被加热至熔点,使用电磁搅拌获得均匀液体。接下来,通过几个步骤,坩埚以恒定的速度从电感到冷却系统较低。因此,我们获得坩埚中的材料的受控冷却,导致材料的均匀内部结构,无杂质或内应力。凝固过程的数值模型分为四个步骤,一个用于加热,两个用于加热和冷却,仅用于冷却。

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