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Embedded-atom-method study of structural, thermodynamic, and atomic-transport properties of liquid Ni-Al alloys

机译:嵌入式原子方法研究液态Ni-Al合金的结构,热力学和原子传输性质

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Structural, thermodynamic, and atomic-transport properties of liquid Ni-Al alloys have been studied by Monte Carlo and molecular-dynamics simulations based upon three different embedded-atom method (EAM) interatomic potentials, namely those due to Foiles and Daw (FD) [J. Mater. Res. 2, 5 (1987)], Voter and Chen (VC) [in Characterization of Defects in Materials, edited by R. W. Siegel et al. MRS Symposia Proceedings. No. 82 (Materials Research Society, Pittsburgh, 1987), p.175] and Ludwig and Gumbsch (LG) [Model. Simul. Mater. Sci. Eng. 3, 533 (1995)]. We present detailed comparisons between calculated results and experimental data for structure factors, atomic volumes, enthalpies of mixing, activities, and viscosities. Calculated partial structure factors are found to be in semiquantitative agreement with published neutron scattering measurements for Ni20Al80 alloys, indicating that short-range order in the liquid phase is qualitatively well described. Calculated thermodynamic properties of mixing are found to agree very well with experimental data for Ni compositions greater than 75 atomic %, while for alloys richer in Al the magnitudes of the enthalpies and entropies of mixing are significantly underestimated. The VC and LG potentials give atomic densities and viscosities in good agreement with experiment for Ni-rich compositions, while FD potentials consistently underestimate both properties at all concentrations. The results of this study demonstrate that VC and LG potentials provide a realistic description of the thermodynamic and atomic transport properties for NixAl1-x liquid alloys with x greater than or equal to 0.75, and point to the limitations of EAM potentials for alloys richer in Al. [References: 69]
机译:通过蒙特卡洛(Monte Carlo)和基于三种不同的嵌入原子方法(EAM)原子间电势的分子动力学模拟研究了液态Ni-Al合金的结构,热力学和原子传输性能,这是由于Foiles和Daw(FD)引起的[J.母校Res。 2,5,5(1987)],Voter and Chen(VC)[在材料缺陷的表征中,由R. W. Siegel等编辑。 MRS学术研讨会论文集。第82号(材料研究协会,匹兹堡,1987年,第175页)以及路德维希和贡布施(LG)[模型。同谋母校科学。 3,533(1995)]。我们提供结构因子,原子量,混合焓,活性和粘度的计算结果与实验数据之间的详细比较。已发现计算得出的部分结构因子与Ni20Al80合金的已公布中子散射测量值在半定量方面吻合,这表明定性地很好地描述了液相中的短程有序。对于大于75原子%的Ni组成,发现混合的计算热力学性质与实验数据非常吻合,而对于富含Al的合金,混合的焓和熵的幅度被低估了。 VC和LG电位给出的原子密度和粘度与富镍成分的实验吻合得很好,而FD电位始终低估了所有浓度下的两种性能。这项研究的结果表明,VC和LG势提供了x大于或等于0.75的NixAl1-x液态合金的热力学和原子传输性质的现实描述,并指出了EAM势对于富含Al的合金的局限性。 [参考:69]

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