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The Microstructures and Mechanical Properties of Molybdenum Disilicide Preforms Infiltrated by Aluminum

机译:铝渗透液体过二氧化碳预成型坯的微观结构和力学性能

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Infiltrant aluminum was infiltrated into molybdenum disilicide preforms in N{sub}2 atmosphere at different temperatures by liquid reactive infiltration processing. The mechanical properties and phase composition of these materials were analyzed and discussed. The experimental results showed that the samples were corresponding to 10 at.% Al averagely after sintered, and consisted of Mo(Al,Si){sub}2 phase and Al-Si alloy phase. High infiltration temperature would lead to Al deficiency mainly in Al-Si alloy phase. The highest bending strength of 737 MPa was reached at infiltration temperature of 1350°C because the sample had fine and integrated grains, and the strong combination between particles. When the infiltration temperature was higher than 1350°C, the bending strength of material prepared would decrease because of the phase fragmentation.
机译:通过液体反应性渗透处理在不同温度下渗透渗透铝在N {Sub} 2气氛中渗透到钼二硫化物预成型件中。分析并讨论了这些材料的机械性能和相组成。实验结果表明,在烧结后,样品平均值对应于10.%Al,并由Mo(Al,Si){亚} 2相和Al-Si合金相。高浸润温度将导致Al缺乏主要在Al-Si合金相。在1350℃的渗透温度下达到737MPa的最高弯曲强度,因为样品具有细且含有的晶粒,以及颗粒之间的强组合。当渗透温度高于1350℃时,由于相破碎化,所制备的材料的弯曲强度将降低。

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