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In situ synthesis of Al2O3 particulate-reinforced Al matrix composite by low temperature sintering

机译:低温烧结原位合成Al2O3颗粒增强Al基复合材料

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摘要

The powder mixture of Al-10 wt.% SiO2 was selected as a research system. Compared with an as-mixed powder, the phase structure and microstructure of an as-milled powder was investigated, and the temperature of the displacement reaction in the two kinds of powder was determined by thermal analysis. The preforms of the two kinds of powder were sintered based on the result of thermal analysis. The results indicate that the particle size of the Al-SiO2 powder was refined greatly after 4 h of high energy ball milling, and diffusion couples were formed due to SiO2 particles embedded in the Al matrix. The displacement reaction did not occur between Al and SiO2 for the as-mixed powder, while it occurred in the range of 560-680 degrees C for the as- milled powder. For the as-milled powder, an aluminum matrix composite reinforced with Al2O3 particles, which were homogeneously distributed in the Al matrix, can be fabricated by sintering at 640 degrees C for 2 h. (c) 2006 Springer Science + Business Media, Inc.
机译:选择Al-10 wt。%SiO2的粉末混合物作为研究系统。与混粉比较,研究了混粉的相结构和微观结构,并通过热分析确定了两种粉末中的置换反应温度。根据热分析结果,对两种粉末的预型件进行了烧结。结果表明,高能球磨4 h后,Al-SiO2粉末的粒径大大细化,并且由于SiO2颗粒嵌入Al基体中而形成扩散对。混合粉末在Al和SiO2之间没有发生置换反应,而研磨粉末在560-680摄氏度的范围内发生了置换反应。对于研磨后的粉末,可以通过在640摄氏度下烧结2小时来制造均匀分布在Al基体中的,由Al2O3颗粒增强的铝基复合材料。 (c)2006年Springer Science + Business Media,Inc.

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