Title of article :
Constant moving crack in a magnetoelectroelastic material under anti-plane shear loading
Author/Authors :
Keqiang Hu، نويسنده , , Guoqiang Li، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Abstract :
Analytical solutions for an anti-plane Griffith moving crack inside an infinite magnetoelectroelastic medium under
the conditions of permeable crack faces are formulated using integral transform method. The far-field anti-plane
mechanical shear and in-plane electrical and magnetic loadings are applied to the magnetoelectroelastic material.
Expressions for stresses, electric displacements and magnetic inductions in the vicinity of the crack tip are derived. Field
intensity factors for magnetoelectroelastic material are obtained. The stresses, electric displacements and magnetic
inductions at the crack tip show inverse square root singularities. The moving speed of the crack have influence on
the dynamic electric displacement intensity factor (DEDIF) and the dynamic magnetic induction intensity factor
(DMIIF), while the dynamic stress intensity factor (DSIF) does not depend on the velocity of the moving crack. When
the crack is moving at very lower or very higher speeds, the crack will propagate along its original plane; while in the
range of Mc1 < M < Mc2, the propagation of the crack possibly brings about the branch phenomena in magnetoelectroelastic
media.
Keywords :
Moving crack , Magnetoelectroelastic medium , Integral transform method , Branch phenomena , Permeable
Journal title :
International Journal of Solids and Structures
Journal title :
International Journal of Solids and Structures