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Transformation paths in transition-metal disilicides

机译:过渡金属二硅化物的转化途径

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We suggest and investigate three possible displacive transformation paths between the ideal Cl It,, C40 and C54 structures in MoSi2, VSi2 and TiSi2 by calculating ab initio total energies along these paths. An estimate of transition temperatures based on the calculated energy barriers leads to values comparable with the melting temperatures of the disilicides studied. This confirms their high temperature stability and indicates that if a phase transformation between Cl lb, C40 and C54 structures of the disilicides takes place, then its prevailing mechanism should be diffusional rather than martensitic like. During the transformations studied, atoms come as close together as, for example, in configurations with interstitials. Hence, the present ab initio results can also help in fitting adjustable parameters of semi-empirical interatomic potentials for the transition-metal disilicides, in particular of the repulsion at short separations of atoms.
机译:我们建议并通过计算沿这些路径的从头算起总能量,来研究理想的Cl It,MoSi2,VSi2和TiSi2中的C40和C54结构之间的三种可能的位移变换路径。基于计算出的能垒对转变温度的估计得出的值可与所研究的二硅化物的熔融温度相比。这证实了它们的高温稳定性,并表明如果二硅化物的C1b,C40和C54结构之间发生相变,则其主要机理应该是扩散而不是马氏体。在研究的转换过程中,原子以例如具有间隙的构造紧密靠近。因此,目前的从头算结果也可以帮助拟合过渡金属二硅化物的半经验原子间电势的可调节参数,尤其是在原子的短距离排斥时的可调节参数。

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