Atomistic simulation of the deformation of gold nanopillars

被引:102
|
作者
Rabkin, E.
Nam, H. -S
Srolovitz, D. J.
机构
[1] Princeton Univ, Princeton Ctr Complex Mat, Princeton, NJ 08540 USA
[2] Yeshiva Univ, Dept Phys, New York, NY 10033 USA
基金
美国国家科学基金会;
关键词
compression test; yield phenomena; plastic deformation; MD-simulations; nanomaterials;
D O I
10.1016/j.actamat.2006.10.058
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We perform a series of molecular dynamics simulations of the uniaxial compression of cylindrical gold nanopillars. Yield occurs via Shockley partial dislocation nucleation at the surface. Dislocation nucleation is preceded, in some cases (depending on the interatomic potential), by an elastic instability of the nanopillars, either Euler buckling or shears folding. For some potentials, this buckling is related to compressive stress-driven face-centered cubic-hexagonal close-packed phase transitions in the bulk, In cases in which dislocation nucleation is not preceded by an elastic instability (this depends on the choice of the interatomic potential and loading direction), the yield stress is found to be either a parabolic (i.e. described by the relationship A - B root T with A, B = const) or linear function of temperature, T. We suggest that Shockley partial dislocation nucleation at the surface of the nanopillar occurs at a critical strain, where the local strain has contributions from the homogeneous elastic strain and an atomic-level thermal strain (associated with the thermal vibrations). This model explains the observed temperature dependence of the yield stress of the compressed nanopillars. (c) 2006 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:2085 / 2099
页数:15
相关论文
共 50 条
  • [41] Atomistic process of twin-boundary migration induced by shear deformation in gold
    Kizuka, Tokushi
    1600, Japan Society of Applied Physics, 1-12-3 Kudan-Kita,k Chiyoda-ku, Tokyo, 102, Japan (46):
  • [42] Tensile deformation of electroplated copper nanopillars
    Jennings, Andrew T.
    Greer, Julia R.
    PHILOSOPHICAL MAGAZINE, 2011, 91 (7-9) : 1108 - 1120
  • [43] Shape Modulation in Deformation of Janus Nanopillars
    Suh, Dongchul
    Lee, Hyemin
    Yoon, Hyunsik
    SCIENCE OF ADVANCED MATERIALS, 2014, 6 (11) : 2474 - 2477
  • [44] Deformation mechanisms in nanotwinned metal nanopillars
    Jang, Dongchan
    Li, Xiaoyan
    Gao, Huajian
    Greer, Julia R.
    NATURE NANOTECHNOLOGY, 2012, 7 (09) : 594 - 601
  • [45] Strengthening in gold nanopillars with nanoscale twins
    Afanasyev, Konstantin A.
    Sansoz, Frederic
    NANO LETTERS, 2007, 7 (07) : 2056 - 2062
  • [46] Atomistic simulation study of tensile deformation in bulk nanocrystalline bcc iron
    Yuan FuPing
    SCIENCE CHINA-PHYSICS MECHANICS & ASTRONOMY, 2012, 55 (09) : 1657 - 1663
  • [47] Molecular Simulation of Sorption-Induced Deformation in Atomistic Nanoporous Materials
    Chen, Mingyang
    Coasne, Benoit
    Guyer, Robert
    Derome, Dominique
    Carmeliet, Jan
    LANGMUIR, 2019, 35 (24) : 7751 - 7758
  • [48] Atomistic simulation of deformation behavior at a crack tip in Magnesium single crystal
    Jiang, Li-Ming
    Guo, Ya-Fang
    ADVANCED MATERIAL SCIENCE AND TECHNOLOGY, PTS 1 AND 2, 2011, 675-677 : 949 - 951
  • [49] Atomistic simulation of the influence of nanomachining-induced deformation on subsequent nanoindentation
    Zhang, J. J.
    Sun, T.
    Hartmaier, A.
    Yan, Y. D.
    COMPUTATIONAL MATERIALS SCIENCE, 2012, 59 : 14 - 21
  • [50] Atomistic Simulation on the Twin Boundary Migration in Mg under Shear Deformation
    Song, Shichao
    Wang, Yu
    Wang, Yang
    Wang, Xi
    MATERIALS, 2019, 12 (19)