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首页> 外文期刊>Journal of Materials Science >Microstructure and infiltration kinetics of Si3N4/Al-Mg composites fabricated by pressureless infiltration
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Microstructure and infiltration kinetics of Si3N4/Al-Mg composites fabricated by pressureless infiltration

机译:无压浸渗制备的Si3N4 / Al-Mg复合材料的微观结构和浸渗动力学

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摘要

Si3N4/Al-Mg composites reinforced by ceramic interpenetrating network structure had been fabricated via pressureless infiltration technology. The matrix and the reinforcement phase, form an interconnected interpenetrating network structure. The Al-Mg/Si3N4 system exhibits an excellent wettability under moderate conditions. The increasing of Mg content (2-10 wt%) resulted in an increased amount of infiltration, once Mg content beyond 10 wt% has an adverse effect. Light chemical reaction occurs in the interface of Al-Mg/Si3N4 system and the reaction productions reduce the surface tension of melt and impulse the advance of infiltration. Infiltration temperature and infiltration time were the key parameters, which turn into the infiltration impetus. The appropriate infiltration temperature is 1050 degrees C and the corresponding infiltration time is 15 min, prolonging the infiltration time continuously has no significance.
机译:采用无压浸渗技术制备了陶瓷互穿网络结构增强的Si3N4 / Al-Mg复合材料。基质和增强相形成相互连接的互穿网络结构。 Al-Mg / Si3N4体系在适度的条件下具有出色的润湿性。一旦超过10wt%的Mg具有不利影响,Mg含量(2-10wt%)的增加导致渗透量增加。在Al-Mg / Si3N4系统的界面发生轻化学反应,反应产物降低了熔体的表面张力并推动了渗透的进行。入渗温度和入渗时间是关键参数,它们成为入渗动力。合适的渗透温度是1050℃,相应的渗透时间是15分钟,连续延长渗透时间没有意义。

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