Preparation of Ceramic Nitride-Carbide Composition AlN–SiC by SHS Method Using Halide Salt and Sodium Azide

A. Amosov, K. Smetanin, Y. Titova, D. Maidan
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Abstract

The advantages of composite nitride-carbide ceramics AlN–SiC are presented, which along with good thermal conductivity and corrosion resistance of aluminum nitride has significantly better mechanical characteristics and is promising for use not only in the metallurgy and mechanical engineering as a structural material working under mechanical load at high temperatures, but also in electronics as a new high-temperature ceramics for various purposes. It is shown that the modern method of self-propagating high-temperature synthesis (SHS), which is also called combustion Synthesis, is more cost-effective and attractive for producing a powder composition of AlN-SiC, compared to other traditional more complex and energy-intensive methods. The well-known varieties of using the SHS method for obtaining AlN-SiC, their advantages and disadvantages are listed. The possibility of preparation of ceramic nitride-carbide powder composition AlN–SiC by the method of azide SHS during the combustion of powders mixtures of Al, Si, C, sodium azide NaN3and halide salt (NH4)2SiF6is studied using a thermodynamic calculation and an experimental study of the temperature and composition of combustion products.
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卤化物盐和叠氮化钠SHS法制备氮化碳化物复合陶瓷AlN-SiC
介绍了氮化碳化物复合陶瓷AlN-SiC的优点,结合氮化铝良好的导热性和耐腐蚀性,具有较好的力学性能,不仅在冶金和机械工程中作为高温机械载荷下工作的结构材料,而且在电子领域作为一种新型的高温陶瓷,具有广泛的应用前景。结果表明,与其他传统的更复杂和能源密集型的方法相比,现代的自传播高温合成(SHS)方法(也称为燃烧合成)在生产AlN-SiC粉末组合物方面更具成本效益和吸引力。列举了用SHS法制备AlN-SiC的常用品种及其优缺点。通过热力学计算和燃烧产物温度和组成的实验研究,研究了叠氮化物SHS法在Al、Si、C、叠氮化物钠nan3和卤化物盐(NH4) 2sif6混合粉末燃烧过程中制备氮化碳化物陶瓷粉末AlN-SiC的可能性。
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