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钛在块状材料、晶界和表面的自扩散过程的分子动力学模拟。

Molecular dynamics simulation of self-diffusion processes in titanium in bulk material, on grain junctions and on surface.

作者信息

Sushko Gennady B, Verkhovtsev Alexey V, Yakubovich Alexander V, Schramm Stefan, Solov'yov Andrey V

机构信息

Frankfurt Institute for Advanced Studies, Goethe-Universität Frankfurt am Main , Ruth-Moufang-Str. 1, 60438 Frankfurt am Main, Germany.

出版信息

J Phys Chem A. 2014 Aug 21;118(33):6685-91. doi: 10.1021/jp503777q. Epub 2014 Jun 27.

Abstract

The process of self-diffusion of titanium atoms in a bulk material, on grain junctions and on surface is explored numerically in a broad temperature range by means of classical molecular dynamics simulation. The analysis is carried out for a nanoscale cylindrical sample consisting of three adjacent sectors and various junctions between nanocrystals. The calculated diffusion coefficient varies by several orders of magnitude for different regions of the sample. The calculated values of the bulk diffusion coefficient correspond reasonably well to the experimental data obtained for solid and molten states of titanium. Investigation of diffusion in the nanocrystalline titanium is of a significant importance because of its numerous technological applications. This paper aims to reduce the lack of data on diffusion in titanium and describe the processes occurring in bulk, at different interfaces and on surface of the crystalline titanium.

摘要

通过经典分子动力学模拟,在很宽的温度范围内对钛原子在块状材料、晶粒交界处和表面的自扩散过程进行了数值研究。分析是针对一个由三个相邻扇区和纳米晶体之间的各种交界处组成的纳米级圆柱形样品进行的。样品不同区域的计算扩散系数变化了几个数量级。计算得到的块状扩散系数值与钛的固态和熔融态实验数据相当吻合。由于纳米晶钛有许多技术应用,因此对其扩散的研究具有重要意义。本文旨在减少钛扩散数据的不足,并描述结晶钛的块状、不同界面和表面发生的过程。

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