Twinning anisotropy of tantalum during nanoindentation

被引:68
|
作者
Goel, Saurav [1 ]
Beake, Ben [2 ,3 ]
Chan, Chi-Wai [1 ]
Faisal, Nadimul Haque [4 ]
Dunne, Nicholas [1 ]
机构
[1] Queens Univ, Sch Mech & Aerosp Engn, Belfast BT9 5AH, Antrim, North Ireland
[2] Micro Mat Ltd, Wrexham LL13 7YL, Wales
[3] Manchester Metropolitan Univ, Dalton Res Inst, Manchester M15 GD, Lancs, England
[4] Robert Gordon Univ, Sch Engn, Aberdeen AB10 7GJ, Scotland
关键词
MD simulation; Nanoindentation; Tantalum; Anisotropy; MOLECULAR-DYNAMICS SIMULATIONS; EMBEDDED-ATOM METHOD; DISLOCATION NUCLEATION; ATOMISTIC SIMULATION; PLASTIC-DEFORMATION; THIN-FILMS; BCC; SIZE; POTENTIALS; TRANSITION;
D O I
10.1016/j.msea.2014.12.075
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Unlike other BCC metals, the plastic deformation of nanocrystalline Tantalum (Ta) during compression is regulated by deformation twinning. Whether or not this twinning exhibits anisotropy was investigated through simulation of displacement-controlled nanoindentation test using molecular dynamics (MD) simulation. MD data was found to correlate well with the experimental data in terms of surface topography and hardness measurements. The mechanism of the transport of material was identified due to the formation and motion of prismatic dislocations loops (edge dislocations) belonging to the 1/2 < 111 > type and < 100 > type Burgers vector family. Further analysis of crystal defects using a fully automated dislocation extraction algorithm (DXA) illuminated formation and migration of twin boundaries on the (110) and (111) orientation but not on the (010) orientation and most importantly after retraction all the dislocations disappeared on the (110) orientation suggesting twinning to dominate dislocation nucleation in driving plasticity in tantalum. A significant finding was that the maximum shear stress (critical Tresca stress) in the deformation zone exceeded the theoretical shear strength of Ta (Shear modulus/2 pi similar to 10.03 GPa) on the (010) orientation but was lower than it on the (110) and the (111) orientations. In light of this, the conventional lore of assuming the maximum shear stress being 0.465 times the mean contact pressure was found to break down at atomic scale. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:249 / 261
页数:13
相关论文
共 50 条
  • [21] Investigation of the Mechanical Twinning of Antimony Single Crystals by Nanoindentation
    O. M. Ostrikov
    S. N. Dub
    Journal of Engineering Physics and Thermophysics, 2003, 76 (1) : 200 - 203
  • [22] On the crystallographic anisotropy of nanoindentation in pseudoelastic NiTi
    Pfetzing-Micklich, Janine
    Somsen, Christoph
    Dlouhy, Antonin
    Begau, Christoph
    Hartmaier, Alexander
    Wagner, Martin F. -X.
    Eggeler, Gunther
    ACTA MATERIALIA, 2013, 61 (02) : 602 - 616
  • [23] Anisotropy effects in diamond under nanoindentation
    Huang, Cheng
    Peng, Xianghe
    Yang, Bo
    Xiang, Henggao
    Sun, Sha
    Chen, Xiang
    Li, Qibin
    Yin, Deqiang
    Fu, Tao
    CARBON, 2018, 132 : 606 - 615
  • [24] Twinning of bismuth single crystals irradiated with tantalum ions
    Ostrikov, OM
    PHYSICS OF METALS AND METALLOGRAPHY, 2000, 89 (06): : 627 - 631
  • [25] Incipient deformation twinning in dynamically sheared bcc tantalum
    Chen, C. Q.
    Florando, J. N.
    Kumar, M.
    Ramesh, K. T.
    Hemker, K. J.
    ACTA MATERIALIA, 2014, 69 : 114 - 125
  • [26] Nanoindentation of BaTiO3: dislocation nucleation and mechanical twinning
    Gaillard, Y.
    Macias, A. Hurtado
    Munoz-Saldana, J.
    Anglada, M.
    Trapaga, G.
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2009, 42 (08)
  • [27] PLASTIC ANISOTROPY OF TANTALUM NIOBIUM AND MOLYBDENUM
    SHERWOOD, PJ
    GUIU, F
    KIM, HC
    PRATT, PL
    CANADIAN JOURNAL OF PHYSICS, 1967, 45 (2P3) : 1075 - &
  • [28] Shock-induced deformation twinning and omega transformation in tantalum and tantalum-tungsten alloys
    Hsiung, LM
    Lassila, DH
    ACTA MATERIALIA, 2000, 48 (20) : 4851 - 4865
  • [29] Anisotropy of nanoindentation - a tool for the determination of nanocrystal orientation?
    Christopher, D
    Kenny, S
    Smith, R
    Richter, A
    Wolf, B
    King, B
    MULTISCALE PHENOMENA IN MATERIALS-EXPERIMENTS AND MODELING RELATED TO MECHANICAL BEHAVIOR, 2003, 779 : 147 - 152
  • [30] Mechanical Anisotropy in Crystalline Saccharin: Nanoindentation Studies
    Kiran, M. S. R. N.
    Varughese, Sunil
    Reddy, C. Malla
    Ramamurty, U.
    Desiraju, Gautam R.
    CRYSTAL GROWTH & DESIGN, 2010, 10 (10) : 4650 - 4655