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Role of matrix alloy chemistry on the interfacial reaction and solidification of metal matrix composites

机译:基体合金化学对金属基复合材料界面反应和凝固的作用

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Equilibrium Si content required to suppress the interfacial reaction in 2124 Al/SiC and A356 Al/SiC has been thermodynamically predicted by combining Wilson equation with the Miedema model. In 2124 Al/SiC composites, good agreement between thermodynamically calculated and experimental result has been observed in the solid and semi solid state reaction. At higher temperature above 750 deg C, thermodynamically calculated results are much higher than that of experimental values. Strong influence of reinforcement size and volume fraction on the extent of interfacial reaction is also observed in 2124 Al/SiC composites. In these composites, formation of protective layer of Al_4C_3 crystals over SiC surface plays significant role in predicting the equilibrium Si content. The influence of reinforcement particle size and volume fraction on the extent of reaction has not been observed in A356 Al/SiC composites and irrespective of reaction temperature the thermodynamically calculated equilibrium Si contents for A356 Al/SiC composites agrees well with the experimental results.
机译:通过将Wilson方程与Miedema模型相结合,可以热力学预测抑制2124 Al / SiC和A356 Al / SiC中的界面反应所需的平衡Si含量。在2124 Al / SiC复合材料中,在固态和半固态反应中观察到了热力学计算结果与实验结果之间的良好一致性。在高于750摄氏度的较高温度下,热力学计算的结果远高于实验值。在2124 Al / SiC复合材料中也观察到了增强材料的尺寸和体积分数对界面反应程度的强烈影响。在这些复合材料中,在SiC表面上形成Al_4C_3晶体的保护层在预测平衡Si含量方面起着重要作用。在A356 Al / SiC复合材料中,未观察到增强颗粒尺寸和体积分数对反应程度的影响,并且不管反应温度如何,热力学计算得出的A356 Al / SiC复合材料的平衡Si含量均与实验结果吻合良好。

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