Effect of Si-Al Alloy on Kinetics of Reaction-Bonded SiC Infiltration Process

O. Ilegbusi, Jijin Yang
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Abstract

The kinetics of reaction-bonded SiC infiltration process utilizing Si-Al matrix has been investigated theoretically using a modified Washburn model. The effect of alloy composition and temperature on infiltration has been quantified. The resulting characteristics depend on alloy composition of the secondary metallic phase. Specifically, aluminum generally suppresses the infiltration rate. Increasing the temperature enhances both the infiltration capacity and reaction rate.
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Si-Al合金对反应结合SiC渗渗过程动力学的影响
采用改进的Washburn模型,从理论上研究了硅铝基体反应结合SiC渗透过程的动力学。量化了合金成分和温度对渗渗的影响。所得到的特性取决于次级金属相的合金成分。具体来说,铝一般会抑制渗透速率。提高温度可以提高渗透能力和反应速率。
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Cavity Pressure and Part Quality in the Injection Molding Process Effect of Matrix Alloying and Reinforcement Coating on Porosity Nucleation in Metal-Matrix Composites Effect of Si-Al Alloy on Kinetics of Reaction-Bonded SiC Infiltration Process Design and Operation of a Droplet Deposition System for Freeform Fabrication of Metal Parts Prediction of Phase Segregation During Mold Filling of Semi-Solid Slurries
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