首页> 外文会议>67th World Foundry Congress(wfc06): Casting the Future vol.1 >Effect of Volume Fraction and Particle Size of Reinforcement on Thermal Analysis and Heat Transfer Parameters of Gravity Die Cast Hypereutectic AI-22 SI Alloy Matrix Composites
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Effect of Volume Fraction and Particle Size of Reinforcement on Thermal Analysis and Heat Transfer Parameters of Gravity Die Cast Hypereutectic AI-22 SI Alloy Matrix Composites

机译:体积分数和增强颗粒尺寸对重力压铸过共晶AI-22%SI合金基复合材料热分析和传热参数的影响

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摘要

The properties of cast metal matrix composites are largely dependent on the solidification behaviour which is dictated by the thermophysical properties of the melt, mould and the interfacial heat transfer from the metal to the mould. In the present investigation the thermal analysis parameters and heat transfer aspects of hypereutectic aluminium alloy matrix composites were studied. As the vol% of SiC_p increases the total solidification time decreases and the cooling rate increases. The morphology of the primary silicon was very much dependent on the presence of SiC_p. The estimated peak heat flux for the composites are lower than matrix alloy melts solidified under similar conditions. The particle size has a negligible influence on the cooling behaviour. However, composite with finer particle size shows slightly higher peak heat flux.
机译:铸造金属基复合材料的性能很大程度上取决于凝固行为,该凝固行为由熔体,铸模的热物理特性以及从金属到铸模的界面热传递决定。在本研究中,研究了过共晶铝合金基复合材料的热分析参数和传热方面。随着SiC_p的vol%增加,总固化时间减少并且冷却速率增加。初级硅的形态在很大程度上取决于SiC_p的存在。复合材料的估计峰值热通量低于在类似条件下凝固的基体合金熔体。粒径对冷却性能的影响可以忽略不计。然而,具有更细粒度的复合材料显示出更高的峰值热通量。

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