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First-principle investigation of pressure and temperature influence on structural, mechanical and thermodynamic properties of Ti(3)AC(2) (A = Al and Si)

机译:Ti(3)AC(2)(A = Al和Si)的第一原理调查压力和温度对结构,机械和热力学性能的影响

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摘要

The mechanical and thermodynamic properties of Ti3AlC2 and Ti3SiC2 have been investigated by the first principles. The structure is briefly discussed, the compressibility of Ti(3)SiC(2 )is better than Ti3AlC2 . Its mechanical stability is confirmed by the elastic constant, and the results show that the pressure can enhance the resistance to the deformation. In addition, the ductility is also improved with the pressure increasing. The elastic anisotropy is enhanced with increasing the pressure. Finally, the temperature and pressure dependences of thermodynamic properties of Ti(3)AlC(2)and Ti3SiC2 are evaluated by the quasi-harmonic Debye approximation theory, and analyzed the effect of pressure and temperature on the Debye temperature, bulk modulus, heat capacity and the thermal expansion coefficient. The Debye temperature and bulk modulus decrease with increasing the temperature but increase with increasing the pressure. The temperature and pressure have opposite influences on the heat capacity, moreover, the ability of Ti3AlC2 to absorb or release heat is stronger than that of Ti-3 SiC2.
机译:通过第一原理研究了Ti3AlC2和Ti3SIC2的机械和热力学性质。简要讨论了结构,Ti(3)SiC(2)的可压缩性优于Ti3AlC2。其机械稳定性通过弹性常数确认,结果表明,压力可以增强对变形的抵抗力。另外,随着压力的增加,延展性也得到改善。随着压力增加,弹性各向异性增强。最后,通过准谐波脱义理论评估Ti(3)ALC(2)和Ti3SIC2的热力学性质的温度和压力依赖性,并分析了压力和温度对德义温度,散装量,热容量的影响和热膨胀系数。随着温度的增加,随着压力的增加而增加,德比温度和体积模量减小。温度和压力对热容量相反,而且,Ti3AlC2吸收或释放热的能力比Ti-3 SiC2的能力强。

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