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Force-matched empirical potential for martensitic transitions and plastic deformation in Ti-Nb alloys

机译:Ti-Nb合金中马氏体转变和塑性变形的力匹配的经验潜力

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摘要

A force-matched spline-based empirical potential based on the modified embedded-atom method is fit to an extensive database of highly converged density functional theory calculations for titanium-niobium alloys with an evolutionary algorithm. Consistency with experiment and existing models is verified through calculations of structural, elastic, and thermal properties. The potential is used to study the effects of alloying on elastic properties, the martensite phase of Ti-rich alloys, and the α-β and β-ω transformations. Stress- and temperature-induced martensitic transitions are demonstrated in Ti-25 at. % Nb by NPT simulation. Last, the effect of alloying on screw dislocations in hcp-Ti and bcc-Nb is analyzed at 5 at. % solute content with the fitted potential.
机译:基于改进的嵌入式原子方法的力匹配的基于样条的基于水平潜力适用于具有进化算法的钛铌合金的高度会聚密度官能理论计算的广泛数据库。通过结构,弹性和热性能的计算验证了实验和现有模型的一致性。该潜力用于研究合金化对弹性性质的影响,富含Ti的合金的马氏体相,以及α-β和β-ω变换。胁迫和温度诱导的马氏体转变在Ti-25中进行了证明。 NPT模拟%NB。最后,在5ata下分析了合金化对HCP-Ti和BCC-NB的螺杆脱位的影响。 %溶质含量与拟合电位。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第18期|184105.1-184105.13|共13页
  • 作者单位

    Department of Physics The Ohio State University Columbus Ohio 43210 USA;

    Department of Physics The Ohio State University Columbus Ohio 43210 USA;

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