Antiplane shear crack in a functionally graded material strip with surface elasticity

被引:0
|
作者
Ying Yang
Wei-Li Ma
Zhen-Liang Hu
Xian-Fang Li
机构
[1] Central South University,School of Civil Engineering
来源
关键词
Functionally graded materials; Mode III crack; Surface elasticity; Stress intensity factor; Soft-core structure;
D O I
暂无
中图分类号
学科分类号
摘要
When the dimension of a structure falls to the micro-/nanoscale, surface effect is significant and plays a key role in affecting the mechanical behavior. This article studies the influence of surface elasticity on the stress intensity factor of an antiplane shear crack embedded in an elastic strip made of functionally graded materials. Surface elasticity is applied on the strip surfaces and crack faces, and classic elasticity is invoked for the strip interior. An antiplane shear crack problem is solved for a symmetric FGM with a crack parallel to the strip surfaces. The associated problem is converted to a hypersingular integro-differential equation for the out-of-plane displacement on the crack faces through the Fourier transform and then to a singular integro-differential equation with Cauchy kernel. The Galerkin method is applied to expand the crack face displacement as a Chebyshev series, and the singular integro-differential equation reduces to a system of algebraic linear equations. Stress intensity factors at the crack tips and the out-of-plane displacement on the crack faces are calculated numerically. It is found that surface elasticity and gradient index strongly alter the bulk stress and its intensity factors near the crack tips. Positive surface shear modulus decreases the mode III stress intensity factors and negative surface shear modulus has an opposite behavior. The influence of the variation of material gradient on the mode III stress intensity factors is expounded in graph.
引用
收藏
页码:3035 / 3052
页数:17
相关论文
共 50 条
  • [1] Antiplane shear crack in a functionally graded material strip with surface elasticity
    Yang, Ying
    Ma, Wei-Li
    Hu, Zhen-Liang
    Li, Xian-Fang
    ARCHIVE OF APPLIED MECHANICS, 2021, 91 (07) : 3035 - 3052
  • [2] Collinear crack problem in antiplane elasticity for a strip of functionally graded materials
    Chen, YZ
    JOURNAL OF MECHANICS, 2004, 20 (03) : 167 - 175
  • [3] Antiplane elasticity crack problem for a strip of functionally graded materials with mixed boundary condition
    Chen, Y. Z.
    Lin, X. Y.
    Wang, Z. X.
    MECHANICS RESEARCH COMMUNICATIONS, 2010, 37 (01) : 50 - 53
  • [4] Antiplane crack analysis of a functionally graded material by a BIEM
    Zhang, C
    Sladek, J
    Sladek, V
    COMPUTATIONAL MATERIALS SCIENCE, 2005, 32 (3-4) : 611 - 619
  • [5] Moving crack for functionally grated material in an infinite length strip under antiplane shear
    Bi, XS
    Cheng, J
    Chen, XL
    THEORETICAL AND APPLIED FRACTURE MECHANICS, 2003, 39 (01) : 89 - 97
  • [6] A mode III crack in a functionally graded piezoelectric material strip
    Wang, B.L.
    Zhang, X.H.
    Journal of Applied Mechanics, Transactions ASME, 2004, 71 (03): : 327 - 333
  • [7] Antiplane shear impact of multiple coplanar Griffith cracks in an isotropic functionally graded strip
    Feng, WJ
    Wang, HJ
    Xue, Y
    Li, H
    COMPOSITE STRUCTURES, 2006, 73 (03) : 354 - 359
  • [8] A mode III crack in a functionally graded piezoelectric material strip
    Wang, BL
    Zhang, XH
    JOURNAL OF APPLIED MECHANICS-TRANSACTIONS OF THE ASME, 2004, 71 (03): : 327 - 333
  • [9] ANALYSIS OF A CRACK IN A FUNCTIONALLY GRADED STRIP WITH A POWER FORM SHEAR MODULUS
    Jinju Ma1 Zheng Zhong1Chuanzeng Zhang2 ( 1 School of Aerospace Engineering and Applied Mechanics
    ActaMechanicaSolidaSinica, 2009, 22 (05) : 465 - 473
  • [10] ANALYSIS OF A CRACK IN A FUNCTIONALLY GRADED STRIP WITH A POWER FORM SHEAR MODULUS
    Ma, Jinju
    Zhong, Zheng
    Zhang, Chuanzeng
    ACTA MECHANICA SOLIDA SINICA, 2009, 22 (05) : 465 - 473