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Microstructure and Hardness Performance of a SiCp/AI Composite by Pressureless Infiltration Technique

机译:无压渗透技术SICP / AI复合材料的微观结构和硬度性能

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In the present work, a SiCp/Al composite was fabricated by pressureless infiltration of aluminum alloy into loose-packed SiC particles preform, and its microstructure and hardness performance were investigated. The results showed that the composite was fully infiltrated and the particles were distributed uniformly in the composite. Interfacial reactions were found in the as-cast composite and the reaction product was identified as MgAl_2O_4 by TEM observation and XRD analysis. The interfacial reactions enhanced the wettability and promote the spontaneous infiltration process. The thermal exposure process increased the Brinell hardness of the composite. After the thermal exposure process, the block-like interfacial reaction products were distributed discretely, but the amount of the reaction products was increased.
机译:在本作工作中,通过铝合金的无气压渗透到松散填充的SiC颗粒预制件中,对SiCP / Al复合材料进行了制造,并研究了其微观结构和硬度性能。结果表明,复合材料完全渗透,颗粒在复合材料中均匀地分布。在浇铸复合材料中发现界面反应,通过TEM观察和XRD分析将反应产物鉴定为MgAl_2O_4。界面反应增强了润湿性并促进了自发性渗透过程。热曝光过程增加了复合材料的Brinell硬度。在热暴露过程之后,块状的界面反应产物离散地分布,但反应产物的量增加。

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