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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >An investigation on the in situ synthesis-sintering and mechanical properties of MoSi2-xSiC composites prepared by spark plasma sintering
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An investigation on the in situ synthesis-sintering and mechanical properties of MoSi2-xSiC composites prepared by spark plasma sintering

机译:火花等离子体烧结制备MoSi2-xSiC复合材料的原位合成烧结及其力学性能研究

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Composites of MoSi2-x wt.% SiC (x = 5, 10, 15, 20) prepared using spark plasma sintering. The effect of temperature on the in-situ synthesis-sintering was investigated between 1100 degrees C and 1500 degrees C. X-ray diffraction patterns showed that at 1100 degrees C the reactions were incomplete and elementary diffraction peaks of Mo, Si and C still exist. With an increase in temperature from 1100 to 1300 degrees C the reactions were performed completely. The study showed that the sintering ability at higher temperature at the presence of enough mechanical pressure was better because the heat released from the reaction between Mo, Si and C causes higher temperature than the melting point of Si (1410 degrees C). Consequently the silicon would melt during the heating process. The molten Si can strengthen the interconnections and it has higher diffusion rate. Therefore, due to the liquid phase sintering and at the presence of mechanical pressure, the sintering ability at higher temperature is better than lower temperature. Scanning electron microscopy showed that with the addition of carbon, there was no silica phase in the microstructure of the synthesized samples, due to the formation of SiC Therefore, it can be noted that the addition of carbon leads to better mechanical properties due to elimination of silica phase. (C) 2014 Elsevier Ltd. All rights reserved.
机译:使用火花等离子体烧结制备的MoSi2-x重量百分比SiC(x = 5、10、15、20)的复合材料。研究了温度在1100℃至1500℃之间对原位合成烧结的影响。X射线衍射图谱表明,在1100℃时反应不完全,并且Mo,Si和C的元素衍射峰仍然存在。随着温度从1100℃升高到1300℃,反应完全进行。研究表明,在较高的机械压力下,较高温度下的烧结能力更好,这是因为Mo,Si和C之间的反应释放的热量引起的温度高于Si的熔点(1410摄氏度)。因此,硅将在加热过程中熔化。熔融硅可以增强互连,并且具有较高的扩散速率。因此,由于液相烧结并且在机械压力的存在下,高温下的烧结能力优于低温下的烧结能力。扫描电子显微镜显示,由于添加了碳,由于形成了SiC,因此在合成样品的微观结构中没有二氧化硅相。因此,可以注意到,由于消除了碳,添加了碳导致更好的机械性能。硅胶相。 (C)2014 Elsevier Ltd.保留所有权利。

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