曹永革, 葛昌纯, 周张健. 燃烧合成氮化硅的动力学分析[J]. 工程科学学报, 1997, 19(6): 566-570. DOI: 10.13374/j.issn1001-053x.1997.06.010
引用本文: 曹永革, 葛昌纯, 周张健. 燃烧合成氮化硅的动力学分析[J]. 工程科学学报, 1997, 19(6): 566-570. DOI: 10.13374/j.issn1001-053x.1997.06.010
Cao Yongge, Ge Changchun, Zhou Zhangjian. Kinetic Analysis of Combustion Synthesis of Si3N4[J]. Chinese Journal of Engineering, 1997, 19(6): 566-570. DOI: 10.13374/j.issn1001-053x.1997.06.010
Citation: Cao Yongge, Ge Changchun, Zhou Zhangjian. Kinetic Analysis of Combustion Synthesis of Si3N4[J]. Chinese Journal of Engineering, 1997, 19(6): 566-570. DOI: 10.13374/j.issn1001-053x.1997.06.010

燃烧合成氮化硅的动力学分析

Kinetic Analysis of Combustion Synthesis of Si3N4

  • 摘要: 用2种方法研究了燃烧合成氮化硅的动力学.Si3N4的燃烧波蔓延速度为0.097~0.13cm·s-1,燃烧区宽度为0.54cm,用燃烧波速法测得其激活能为75.4kJ/mol.确定了不同燃烧时间的反应转化率和转化程度,并据此计算出燃烧合成Si3N4的激活能为54.3kJ/mol·2种方法计算的激活能数值相差约30%,说明燃烧合成氮化硅过程存在明显的后燃烧现象.随稀释剂质量分数的增加,最高燃烧温度降低,热扩散系数略有增加.加入气相传输剂,能够降低燃烧波速,提高燃烧合成Si3N4动学阶段的激活能.

     

    Abstract: Two methods were used to characterized the kinetics of SHS Si3N4 during the process of Si combustion under high pressure of nitrogen. Activation energy of 75.4 KJ·mol-1 was calculated by using method which was named “wave velocity method” compar-ing to the calculated value of 54.3 kJ·mol-1 by using the other method which was named “reaction rate method”. The discrepancy between the values calculated with these two different methods account for the “after-burn nitridation” process. As the diluent of Si3N4 added increased. The maximum combustion temperature decreased and the thermal conductivity increased smoothly. While the gas transport agent was added, thepropagating velocity of combustion wave was decreased and the activation energy was increased.

     

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