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首页> 外文期刊>Journal of superhard materials: Sverkhtverdye materialy >Modeling and Analysis of the Structure of Binary Melts of the Ni-Mn System
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Modeling and Analysis of the Structure of Binary Melts of the Ni-Mn System

机译:Ni-Mn体系二元熔体结构的建模与分析

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Structure models of Ni-Mn binary melts have been constructed using the Reverse Monte Carlo method and experimental curves of the structure factor. The local atomic structure has been analyzed employing the Voronoy-Delaunay statistical and geometrical method. It has been found that except for mathematical expectation and dispersion of the distribution of the sphericity coefficient of Voronoy polyhedra, concentration dependences of Ni-Mn melt structural parameters are of the additive nature. The analysis of the polyhedra metric characterization indicates that there occurs the dense noncrystalline packing of atoms in the melts under study, the portion of which increases with manganese concentration and reaches its maximum near the 66.7Ni-33.3Mn melt. However, the melt that corresponds to the azeotropic point in the Ni-Mn phase diagram is characterized by an intensification of the interaction between the Ni-Mn and Mn-Mn pairs of atoms. This inhibits the formation of dense noncrystalline packing and increases the variety in the local surroundings of atoms of the melt at this point.
机译:使用反向蒙特卡洛方法和结构因子的实验曲线,建立了Ni-Mn二元熔体的结构模型。已经使用Voronoy-Delaunay统计和几何方法分析了局部原子结构。已经发现,除了数学上的期望和Voronoy多面体的球形度分布的分散以外,Ni-Mn熔体结构参数的浓度依赖性具有加和性。多面体度量特征的分析表明,所研究的熔体中存在原子的致密非晶态堆积,其中一部分随锰浓度的增加而增加,并在66.7Ni-33.3Mn熔体附近达到最大值。然而,对应于Ni-Mn相图中的共沸点的熔体的特征在于Ni-Mn和Mn-Mn对原子之间相互作用的增强。这抑制了致密的非晶堆积的形成,并且在这一点上增加了熔体原子局部周围的变化。

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