期刊文献+

Interaction energy of interface dislocation loops in piezoelectric bi-crystals

Interaction energy of interface dislocation loops in piezoelectric bi-crystals
下载PDF
导出
摘要 Interface dislocations may dramatically change the electric properties, such as polarization, of the piezoelectric crystals. In this paper, we study the linear interactions of two interface dislocation loops with arbitrary shape in generally anisotropic piezoelectric bi-crystals. A simple formula for calculating the interaction energy of the interface dislocation loops is derived and given by a double line integral along two closed dislocation curves. Particularly, interactions between two straight segments of the interface dislocations are solved analytically, which can be applied to approximate any curved loop so that an analytical solution can be also achieved. Numerical results show the influence of the bi-crystal interface as well as the material orientation on the interaction of interface dislocation loops. Interface dislocations may dramatically change the electric properties, such as polarization, of the piezoelectric crystals. In this paper, we study the linear interactions of two interface dislocation loops with arbitrary shape in generally anisotropic piezoelectric bi-crystals. A simple formula for calculating the interaction energy of the interface dislocation loops is derived and given by a double line integral along two closed dislocation curves. Particularly, interactions between two straight segments of the interface dislocations are solved analytically, which can be applied to approximate any curved loop so that an analytical solution can be also achieved. Numerical results show the influence of the bi-crystal interface as well as the material orientation on the interaction of interface dislocation loops.
出处 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2017年第2期76-80,共5页 力学快报(英文版)
基金 supports from the National Natural Science Foundation of China(11402133 and 11502128)
关键词 Interface dislocation Piezoelectric bi-crystals Anisotropic elasticity Interaction energy Interface dislocation Piezoelectric bi-crystals Anisotropic elasticity Interaction energy
  • 相关文献

二级参考文献23

  • 1Nan,C.W.,Bichurin,M.I.,Dong,S.X.,Viehland,D.,and Srinivasan,G.Multiferroic mag-netoelectric composites:historical perspective,status,and future directions.Journal of Applied Physics,103,031101(2008).
  • 2Ma,J.,Hu,J.M.,Li,Z.,and Nan,C.W.Recent progress in multiferroic magnetoelectric com-posites:from bulk to thin films.Advanced Materials,23,1062-1087(2011).
  • 3Yuan,J.H.,Pan,E.,and Chen,W.Q.Line-integral representations for the elastic displacements,stresses and interaction energy of arbitrary dislocation loops in transversely isotropic bimaterials.International Journal of Solids and Structures,50,3472-3489(2013).
  • 4Chu,H.J.,Pan,E.,Han,X.,Wang,J.,and Beyerlein,I.J.Elastic fields of dislocation loops in three-dimensional anisotropic bimaterials.Journal of the Mechanics and Physics of Solids,60,418-431(2012).
  • 5Chu,H.J.,Pan,E.,Wang,J.,and Beyerlein,I.J.Elastic displacement and stress fields induced by a dislocation of polygonal shape in an anisotropic elastic half-space.Journal of Applied Mechanics,79,1 9(2012).
  • 6Akarapu,S.and Zbib,H.M.Line-integral solution for the stress and displacement fields of an arbitrary dislocation segment in isotropic bi-materials in 3D space.Philosophical Magazine,89,2149-2166(2009).
  • 7Tan,E.H.and Sun,L.Z.Stress field due to a dislocation loop in a heterogeneous thin film-substrate system.Modelling and Simulation in Materials Science and Engineering,14,993-1013(2006).
  • 8Gosling,T.J.and Willis,J.R.A line-integral representation for the stresses due to an arbitrary dislocation in an isotropic half-space.Journal of the Mechanics and Physics of Solids,42,1199-1221(1994).
  • 9Han,X.L.,Pan,E.,and Sangghaleh,A.Fields induced by three-dimensional dislocation loops in anisotropic magneto-electro-elastic bimaterials.Philosophical Magazine,93,3291-3313(2013).
  • 10Chen,W.Q.,Pan,E.,Wang,H.M.,and Zhang,C.Z.Theory of indentation on multiferroic composite materials.Journal of the Mechanics and Physics of Solids,58,1524-1551(2010).

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部