王国亮:Thermodynamic Study on Self-propagating High Temperature Synthesis of TiB2/Fe Composites论文

王国亮:Thermodynamic Study on Self-propagating High Temperature Synthesis of TiB2/Fe Composites论文

本文主要研究内容

作者王国亮,李烨飞(2019)在《Thermodynamic Study on Self-propagating High Temperature Synthesis of TiB2/Fe Composites》一文中研究指出:Based on the experimental analysis and theoretical calculation, the self-propagating high temperature synthesis of TiB2/Fe composite was studied. The experimental results show that the interfacial between TiB2 and Fe was smooth and clear, and the composite bending strength increased with the addition of Fe, however, the hardness decreased accordingly. The thermodynamics of the composites preparation process was calculated. The calculation results show that the primary chemical reaction was the reaction between Ti and B. The extra B can react with Fe, producing the brittle phase Fe2 B. By increasing Ti, the production of Fe2B will decrease and a few of Ti-Fe intermetallic compound will be produced by the reaction between Ti and Fe in the composites. Finally, according to the Merzhanov condition of the adiabatic system, it is concluded that the Fe content must be selected between 16.3% and 54.3% by the thermodynamics temperature of reaction calculation.

Abstract

Based on the experimental analysis and theoretical calculation, the self-propagating high temperature synthesis of TiB2/Fe composite was studied. The experimental results show that the interfacial between TiB2 and Fe was smooth and clear, and the composite bending strength increased with the addition of Fe, however, the hardness decreased accordingly. The thermodynamics of the composites preparation process was calculated. The calculation results show that the primary chemical reaction was the reaction between Ti and B. The extra B can react with Fe, producing the brittle phase Fe2 B. By increasing Ti, the production of Fe2B will decrease and a few of Ti-Fe intermetallic compound will be produced by the reaction between Ti and Fe in the composites. Finally, according to the Merzhanov condition of the adiabatic system, it is concluded that the Fe content must be selected between 16.3% and 54.3% by the thermodynamics temperature of reaction calculation.

论文参考文献

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  • 论文详细介绍

    论文作者分别是来自Journal of Wuhan University of Technology(Materials Science)的王国亮,李烨飞,发表于刊物Journal of Wuhan University of Technology(Materials Science)2019年04期论文,是一篇关于,Journal of Wuhan University of Technology(Materials Science)2019年04期论文的文章。本文可供学术参考使用,各位学者可以免费参考阅读下载,文章观点不代表本站观点,资料来自Journal of Wuhan University of Technology(Materials Science)2019年04期论文网站,若本站收录的文献无意侵犯了您的著作版权,请联系我们删除。

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