无定形固体
径向分布函数
放松(心理学)
静水应力
非晶态金属
材料科学
凝聚态物理
分布函数
流体静力平衡
压力(语言学)
分配力矩法
物理
热力学
化学
分子动力学
计算化学
结晶学
数学
量子力学
统计
参数统计
哲学
有限元法
社会心理学
语言学
心理学
作者
David J. Srolovitz,T. Egami,V. Vítek
出处
期刊:Physical review
日期:1981-12-15
卷期号:24 (12): 6936-6944
被引量:198
标识
DOI:10.1103/physrevb.24.6936
摘要
A method of interpreting radial distribution functions (RDF) of amorphous metals is proposed in which the role of the local atomic structure is emphasized. It is found that the width and height of the peaks of the RDF are related to the second moment of the atomic-level hydrostatic stress distribution $〈{p}^{2}〉$. The results of this analysis are then used to explain the details of the changes that occur in the RDF when structural relaxation takes place. The theoretical ▵RDF is found to be in excellent agreement with the results of a computer study and previous experimental results. It is further proposed that changes in $〈{p}^{2}〉$ may be most easily accounted for in terms of changes in the density of the structural defects defined in terms of the local fluctuations in the hydrostatic stress. In this way the changes that occur in the structure of amorphous metal during structural relaxation, as represented by the RDF, may be explained in terms of the motion and annihilation of these structural defects. It is concluded that the number density of defects which could account for the observed changes in the experimental RDF is 10%. It is also found that while the hydrostatic stress distribution may be significantly changed during structural relaxation, the distribution of the atomic-level shear stresses remains unaltered.
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