Изменение температуры плавления металлов с ростом давления

Магомед Нуцалавович Магомедов
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Abstract

A new analytical (i.e., without computer modeling) method for calculating the dependence of the melting temperature (Tm) of a single-component crystal on pressure (P) is proposed. The method is based on the delocalization melting criterion and does not contain fitting constants. The baric dependences of the melting temperature Tm(P) and its pressure derivative Tm(P) for gold, platinum and niobium in the pressure range: P = 0 – 1000 GPa were calculated by this method. It was shown that the dependences calculated by this method for gold and platinum agree better with the experimental data than the dependences obtained by computer simulation methods. For niobium, the calculated dependence Tm(P) turned out to be steeper, i.e., the value Tm(P) turned out to be larger than in the experiment. It was indicated that this discrepancy might be due both to a decrease in the Lindemann parameter with increasing pressure and to a redistribution of electrons on the s-d-orbitals during compression of transition metals with a BCC structure.
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金属熔点随压力升高而变化
提出了一种新的解析(即不需要计算机模拟)方法来计算单组分晶体的熔化温度(Tm)对压力(P)的依赖关系。该方法基于离域熔化准则,不包含拟合常数。用该方法计算了在P = 0 ~ 1000 GPa压力范围内,金、铂和铌的熔点温度Tm(P)及其压力导数Tm(P)的压强依赖性。结果表明,该方法计算的金和铂的依赖关系比计算机模拟方法得到的依赖关系更符合实验数据。对于铌,计算依赖性Tm(P)变得更陡峭,即Tm(P)的值比实验中更大。结果表明,这种差异可能是由于林德曼参数随压力的增加而减小,也可能是由于具有BCC结构的过渡金属在压缩过程中电子在s-d轨道上的重新分布。
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