首页> 外文期刊>Journal of Materials Science >Effects of pressure and vibration on the thermal decomposition of cubic Ti _(1-x) Al _x N, Ti _(1-x) Zr x N, and Zr _(1-x) Al _x N coatings: A first-principles study
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Effects of pressure and vibration on the thermal decomposition of cubic Ti _(1-x) Al _x N, Ti _(1-x) Zr x N, and Zr _(1-x) Al _x N coatings: A first-principles study

机译:压力和振动对立方Ti _(1-x)Al _x N,Ti _(1-x)Zr x N和Zr _(1-x)Al _x N涂层热分解的影响:第一性原理研究

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摘要

Thermodynamic properties as well as the miscibility gap (binodal) and spinodal decompositions of the cubic Ti _(1-x) Al _x N, Ti _(1-x) Zr x N, and Zr _(1-x) Al _x N coating alloys have been computed using first-principles calculations. Herein, the cluster expansion method and especially the special quasirandom structure are employed to describe the disordered alloys. The effects of pressure and lattice vibration on the miscibility gaps and spinodal decompositions of the above alloys have been investigated by means of Helmholtz free energy with the vibrational contribution depicted with the Debye-Grüneisen model. It is found that the application of hydrostatic pressure promotes the isostructural decomposition of Ti _(1-x) Al _x N, Ti _(1-x) Zr x N, and Zr _(1-x) Al _x N alloys, whereas the vibrational contribution decreases the consolute temperature of the phase separation. Our results indicate that the improved age-hardening behavior of cubic Ti _(1-x) Al _x N coatings with the addition of Zr arises from the enlarged composition range of binodal and spinodal curves at specified temperatures. Our results are in good agreement with the available experimental data and provide a useful insight into the investigation of age-hardening and characterization of Ti-Al-Zr-N-based coatings for high-temperature applications.
机译:立方Ti _(1-x)Al _x N,Ti _(1-x)Zr x N和Zr _(1-x)Al _x N的热力学性质以及混溶间隙(二项式)和旋节线分解涂层合金已使用第一性原理计算得出。在此,采用簇扩展方法,特别是特殊的准随机结构来描述无序合金。借助亥姆霍兹自由能,利用Debye-Grüneisen模型描述的振动贡献,研究了压力和晶格振动对上述合金的混溶间隙和旋节线分解的影响。发现施加静水压力会促进Ti _(1-x)Al _x N,Ti _(1-x)Zr x N和Zr _(1-x)Al _x N合金的同构分解,而振动的影响降低了相分离的固相温度。我们的结果表明,在特定温度下立方钛Ti_(1-x)铝_x N涂层中添加Zr可以改善其时效硬化行为,这是由于其二面体曲线和旋节线曲线的组成范围扩大了。我们的结果与可用的实验数据高度吻合,并为研究高温应用的Ti-Al-Zr-N基涂层的时效硬化和表征提供了有用的见识。

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