Influence of non-uniformly periodic distribution of fibers in composites on the stress field and effective shear modulus under anti-plane shear

被引:0
|
作者
Hui-Feng Yang
Cun-Fa Gao
机构
[1] Nanjing University of Aeronautics and Astronautics,State Key Laboratory of Mechanics and Control of Mechanical Structures
[2] Jiangsu University of Science and Technology,School of Naval Architecture and Ocean Engineering
来源
Acta Mechanica | 2021年 / 232卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Based on the complex variable techniques combined with the boundary collocation method, a semi-analytical procedure is proposed to explore the anti-plane shear behavior of non-uniformly periodic fibrous composites under uniform remote shear loadings. Specific series with unknown coefficients are introduced to describe the complex potentials of the representative unit cell (RUC) of the composite. The unknown coefficients are determined from the continuity conditions on the interface, the periodic boundary conditions imposed on the edge of the unit cell and the remote loading conditions. Once the complex potentials are determined, the effective moduli of the composite are obtained according to the average-field theory. Extensive numerical examples are provided to investigate the influence of the periodic distribution of the inclusions, the moduli of each component, and the volume fraction of the inclusions on the local stress fields and effective shear moduli of the composite. Numerical results show that the inhomogeneous distribution of the inclusions may induce a continuous area with high equivalent stress in the matrix under certain loadings and material properties of each component. However, we could overcome this disadvantage by changing the components or the periodic arrangement of the inclusions. For the case of a RUC with double inclusions, the two inclusions with the same shear moduli arranged symmetrically in the direction of 45 degrees may induce the transverse isotropy of the composite. Nevertheless, when the two inclusions are horizontally arranged and the volume fraction of the inclusions is large enough (more than 10%), the composite generally shows orthotropic characteristics.
引用
收藏
页码:515 / 531
页数:16
相关论文
共 50 条
  • [41] Dynamic stress around a cylindrical nano-inhomogeneity with an interface in a half-plane under anti-plane shear waves
    Fang, Xue-Qian
    Zhang, Le-Le
    Liu, Jin-Xi
    APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2012, 106 (03): : 625 - 633
  • [42] Dynamic stress around a cylindrical nano-inhomogeneity with an interface in a half-plane under anti-plane shear waves
    Xue-Qian Fang
    Le-Le Zhang
    Jin-Xi Liu
    Applied Physics A, 2012, 106 : 625 - 633
  • [43] Crack-tip stress fields in FGMs under anti-plane shear impact loading using the non-local theory
    Bi, Xianshun
    Cai, Xuefeng
    Zhang, Jianxun
    ADVANCES IN FRACTURE AND DAMAGE MECHANICS VI, 2007, 348-349 : 821 - +
  • [44] Analysis of stress and electric fields in a rectangular piezoelectric body with a center crack under anti-plane shear loading
    Kwon, SM
    Lee, KY
    INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2000, 37 (35) : 4859 - 4869
  • [45] Interface energy effect on electromechanical response of piezoelectric composites with an arbitrary nano-inclusion under anti-plane shear
    X. Q. Fang
    H. W. Liu
    J. X. Liu
    G. Q. Nie
    Acta Mechanica, 2015, 226 : 2323 - 2333
  • [46] Interface energy effect on electromechanical response of piezoelectric composites with an arbitrary nano-inclusion under anti-plane shear
    Fang, X. Q.
    Liu, H. W.
    Liu, J. X.
    Nie, G. Q.
    ACTA MECHANICA, 2015, 226 (07) : 2323 - 2333
  • [47] Dynamic non-local theory analysis of multiple cracks in a FGPM under anti-plane shear waves
    Liu, Hai-Tao
    Li, Tie-Jun
    Wu, Jian-Guo
    STRENGTH FRACTURE AND COMPLEXITY, 2018, 11 (01) : 1 - 17
  • [48] Dynamic stress from a subsurface cylindrical inclusion in a functionally graded material layer under anti-plane shear waves
    Fang, Xue-Qian
    Liu, Jin-Xi
    Zhang, Le-Le
    Kong, Yan-Ping
    MATERIALS AND STRUCTURES, 2011, 44 (01) : 67 - 75
  • [49] Electro-mechanical coupling properties of piezoelectric nanocomposites with coated elliptical nano-fibers under anti-plane shear
    Fang, X.-Q. (stduxfang@yeah.net), 1600, American Institute of Physics Inc. (115):
  • [50] Electro-mechanical coupling properties of piezoelectric nanocomposites with coated elliptical nano-fibers under anti-plane shear
    Fang, Xue-Qian
    Huang, Ming-Juan
    Liu, Jin-Xi
    Nie, Guo-Quan
    JOURNAL OF APPLIED PHYSICS, 2014, 115 (06)