Strength asymmetry in nanocrystalline metals under multiaxial loading

被引:117
|
作者
Lund, AC [1 ]
Schuh, CA [1 ]
机构
[1] MIT, Dept Mat Sci & Engn, Cambridge, MA 02139 USA
关键词
nanocrystalline metals; plasticity; simulation; tension-compression asymmetry; metallic glass;
D O I
10.1016/j.actamat.2005.03.023
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Molecular simulations of nanocrystalline nickel are used to investigate the effect of loading state on mechanical response. Simulations at grain sizes near the amorphous limit (2-4 nm) show a clear strength asymmetry, with specimens stronger under uniaxial compression than under uniaxial tension. A full biaxial yield surface is obtained for a grain size of 2 nm, and its shape reflects the asymmetry seen in the uniaxial simulations: the compressive lobe is proportionally larger than the tensile lobe. This biaxial yield surface cannot be well described using traditional yield criteria based on the maximum shear stress, but a good fit can be attained if a pressure or normal stress dependence is included. The simulations also show a monotonic trend towards larger strength asymmetry at larger grain sizes, suggesting the existence of a maximum asymmetry at finite grain sizes. This trend is validated by other mechanistic considerations in the ultrafine range of grain sizes, and discussed relative to the experimental literature. (c) 2005 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:3193 / 3205
页数:13
相关论文
共 50 条
  • [21] Fatigue strength of laser beam welded thin steel structures under multiaxial loading
    Sonsino, CM
    Kueppers, M
    Eibl, M
    Zhang, G
    INTERNATIONAL JOURNAL OF FATIGUE, 2006, 28 (5-6) : 657 - 662
  • [22] Fatigue strength of welded joints under multiaxial loading: Comparison between experiments and calculations
    Witt, M
    Yousefi, F
    Zenner, H
    MULTIAXIAL FATIGUE AND DEFORMATION: TESTING AND PREDICTION, 2000, 1387 : 191 - 210
  • [23] Structural Transformations in the Grain Boundary Region of Nanocrystalline Metals Under Mechanical Loading
    Zolnikov, K. P.
    Kryzhevich, D. S.
    Korchuganov, A. V.
    RUSSIAN PHYSICS JOURNAL, 2019, 62 (08) : 1357 - 1362
  • [24] Structural Transformations in the Grain Boundary Region of Nanocrystalline Metals Under Mechanical Loading
    K. P. Zolnikov
    D. S. Kryzhevich
    A. V. Korchuganov
    Russian Physics Journal, 2019, 62 : 1357 - 1362
  • [25] Investigation on multiaxial strength reduction for multi-directional laminates under variable amplitude loading
    Moeller, M.
    Blaurock, J.
    Ziegmann, G.
    Esderts, A.
    39TH RISO INTERNATIONAL SYMPOSIUM ON MATERIALS SCIENCE: FATIGUE OF COMPOSITE MATERIALS: MICROSTRUCTURE, MECHANICS AND METHODS, 2018, 2018, 388
  • [26] Life estimation for high-strength materials under cyclic loading in the multiaxial stress state
    F. F. Giginyak
    T. N. Mozharovskaya
    P. A. Bulakh
    Strength of Materials, 2009, 41 : 219 - 222
  • [27] Stabilizer Fillet Weld Strength under Multiaxial Loading (Effect of Force, Size and Residual Stress)
    Hadipour, Iman
    Marzbanrad, Javad
    PROCEEDINGS OF WORLD ACADEMY OF SCIENCE, ENGINEERING AND TECHNOLOGY, VOL 23, 2007, 23 : 159 - 166
  • [28] Life estimation for high-strength materials under cyclic loading in the multiaxial stress state
    Giginyak, F. F.
    Mozharovskaya, T. N.
    Bulakh, P. A.
    STRENGTH OF MATERIALS, 2009, 41 (02) : 219 - 222
  • [29] Local strain energy density and fatigue strength of welded joints under uniaxial and multiaxial loading
    Lazzarin, P.
    Livieri, P.
    Berto, F.
    Zappalorto, M.
    ENGINEERING FRACTURE MECHANICS, 2008, 75 (07) : 1875 - 1889
  • [30] Structural coupling mechanism of high strength steel and mild steel under multiaxial cyclic loading
    Javidan, Fatemeh
    Heidarpour, Amin
    Zhao, Xiao-Ling
    Al-Mahaidi, Riadh
    STEEL AND COMPOSITE STRUCTURES, 2018, 27 (02): : 229 - 242