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Negative expansions of interatomic distances in metallic melts.


ABSTRACT: When a material is heated, generally, it dilates. Here, we find a general trend that the average distance between a center atom and atoms in the first nearest-neighbor shell contracts for several metallic melts upon heating. Using synchrotron X-ray diffraction technique and molecular dynamics simulations, we elucidate that this anomaly is caused by the redistribution of polyhedral clusters affected by temperature. In metallic melts, the high-coordinated polyhedra are inclined to evolve into low-coordinated ones with increasing temperature. As the coordination number decreases, the average atomic distance between a center atom and atoms in the first shell of polyhedral clusters is reduced. This phenomenon is a ubiquitous feature for metallic melts consisting of various-sized polyhedra. This finding sheds light on the understanding of atomic structures and thermal behavior of disordered materials and will trigger more experimental and theoretical studies of liquids, amorphous alloys, glasses, and casting temperature effect on solidification process of crystalline materials.

SUBMITTER: Lou H 

PROVIDER: S-EPMC3690872 | biostudies-other | 2013 Jun

REPOSITORIES: biostudies-other

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Negative expansions of interatomic distances in metallic melts.

Lou Hongbo H   Wang Xiaodong X   Cao Qingping Q   Zhang Dongxian D   Zhang Jing J   Hu Tiandou T   Mao Ho-kwang HK   Jiang Jian-Zhong JZ  

Proceedings of the National Academy of Sciences of the United States of America 20130603 25


When a material is heated, generally, it dilates. Here, we find a general trend that the average distance between a center atom and atoms in the first nearest-neighbor shell contracts for several metallic melts upon heating. Using synchrotron X-ray diffraction technique and molecular dynamics simulations, we elucidate that this anomaly is caused by the redistribution of polyhedral clusters affected by temperature. In metallic melts, the high-coordinated polyhedra are inclined to evolve into low-  ...[more]

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