MOLECULAR-DYNAMICS STUDY OF AMORPHIZATION BY INTRODUCTION OF CHEMICAL DISORDER IN CRYSTALLINE NIZR2

被引:134
作者
MASSOBRIO, C
PONTIKIS, V
MARTIN, G
机构
[1] CENS,RECH MET PHYS SECT,F-91191 GIF SUR YVETTE,FRANCE
[2] ECOLE POLYTECH FED LAUSANNE,PHB ECUBLENS,INST PHYS EXPTL,CH-1007 LAUSANNE,SWITZERLAND
来源
PHYSICAL REVIEW B | 1990年 / 41卷 / 15期
关键词
D O I
10.1103/PhysRevB.41.10486
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
By means of constant-temperature, constant-pressure molecular dynamics, we investigate the crystal-to-amorphous transformation of the intermetallic alloy NiZr2 resulting from the introduction of antisite defects. We constructed an n-body potential in the framework of the second-moment approximation of the tight-binding description of the electronic density of states. This modeling of the interatomic forces is successful in reproducing both static and thermodynamic properties of the real material. The imposition of chemical disorder quantified by the appropriate value of the long-range-order parameter, S, engenders a volume expansion followed by relaxation to a stationary state characterized by lower density and higher potential energy. The behavior of the pair distribution functions, g(r), reveals that amorphization takes place for values of S0.6, the corresponding volume expansion being of the order of 2%. Moreover the thermodynamic states obtained by chemical destabilization and rapid quenching from the liquid state are nearly identical. On the time scale of our simulations (10-10 s), no detectable long-range diffusion of either species follows the introduction of chemical disorder. Some relevant features of the pair distribution functions (first and second peak positions, number of nearest neighbors) are in good agreement with those obtained experimentally from amorphous NiZr2 samples generated by rapid quenching. © 1990 The American Physical Society.
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页码:10486 / 10497
页数:12
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