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首页> 外文期刊>Journal of Materials Research >First-principles study of structure and mechanical properties of TMB_(12)(TM = W and Ti) superhard material under pressure
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First-principles study of structure and mechanical properties of TMB_(12)(TM = W and Ti) superhard material under pressure

机译:TMB_(12)(TM = W和Ti)超硬材料在压力下的结构和力学性能的第一性原理研究

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We apply the first-principles calculations to investigate the structure, mechanical, and thermodynamic properties of WB12 and TiB12 under high pressure (0-100 GPa). The calculated results show that WB12 and TiB12 are thermodynamically stable at the 0 GPa or high pressure. WB12 is more thermodynamically stable than TiB12. In particular, the calculated Vickers hardness of WB12 and TiB12 at the ground state is 29.9 GPa and 43.2 GPa, respectively, indicating that TiB12 is a potential superhard material. With increasing pressure, the calculated elastic modulus of WB12 and TiB12 increases gradually. The calculated electronic structure shows that the high Vickers hardness and elastic properties of WB12 and TiB12 derive from the 3D network B-B covalent bonds. In addition, the calculated Debye temperature at the ground state is 927 K for WB12 and 1339 K for TiB12, respectively. With increasing pressure, the calculated Debye temperature of WB12 and TiB12 increases gradually. Our work shows that TiB12 not only exhibits high hardness but also shows better thermodynamic properties in comparison with WB12.
机译:我们应用第一性原理计算来研究在高压(0-100 GPa)下WB12和TiB12的结构,力学和热力学性质。计算结果表明,WB12和TiB12在0 GPa或高压下具有热力学稳定性。 WB12比TiB12在热力学上更稳定。特别地,在基态下计算出的WB12和TiB12的维氏硬度分别为29.9 GPa和43.2 GPa,表明TiB12是潜在的超硬材料。随着压力的增加,WB12和TiB12的计算弹性模量逐渐增加。计算出的电子结构表明,WB12和TiB12的高维氏硬度和弹性来自3D网络B-B共价键。此外,对于WB12,在基态下计算得出的德拜温度分别为927 K和对于TiB12,为1339K。随着压力的增加,WB12和TiB12的计算的德拜温度逐渐升高。我们的工作表明,与WB12相比,TiB12不仅具有较高的硬度,而且还具有更好的热力学性能。

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