论文标题

广义的Lindemann熔化系数

The generalized Lindemann melting coefficient

论文作者

Vopson, Melvin M., Rogers, Nassina, Hepburn, Ian

论文摘要

Lindemann在100年前开发了熔化温度理论,称为Lindemann标准。它的主要假设是,当晶体中离子和原子的根平方振动幅度超过晶体间间距的h时,发生熔化。 Lindemann系数H不确定,科学论文报告了不同元素的H值不同。在这里,我们介绍了以前未观察到的数据趋势,指出了以下事实:Lindemann系数可以与周期表的周期组相关,并具有属于给定定期组的每个元素的确切值。我们报告了12个独特的Lindemann系数值,这些系数值对应于12组的周期表,其中包含具有可识别熔化温度的固体元件。使用这些阀,熔化温度的重新计算表明,与39个元素的实验值相匹配,相当于15个周期组中的12个。这一新观察到的结果开辟了可能通过刺激Lindemann系数的分析研究来进一步完善Lindemann熔融标准的可能性,这是根据这一新发现的结果。

Lindemann developed the melting temperature theory over 100 years ago, known as the Lindemann criterion. Its main assumption is that melting occurs when the root-mean-square vibration amplitude of ions and atoms in crystals exceeds a critical fraction, h of the inter-atomic spacing in crystals. The Lindemann coefficient h is undefined and scientific papers report different h values for different elements. Here we present previously unobserved data trends pointing to the fact that the Lindemann coefficient could be linked to the periodic groups of the periodic table, having an exact value for each element belonging to a given periodic group. We report 12 distinctive Lindemann coefficient values corresponding to 12 groups of the periodic table containing solid elements with identifiable melting temperature. Using these vales, the recalculation of the melting temperatures indicates a good match to the experimental values for 39 elements, corresponding to 12 out of 15 periodic groups. This newly observed result opens up the possibility of further refining the Lindemann melting criterion by stimulating analytical studies of the Lindemann coefficient in the light of this newly discovered result.

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