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Coupled field state around three parallel non-symmetric cracks in a piezoelectric/piezomagnetic material plane

  • Pei Wei Zhang
  • , Zhen Gong Zhou*
  • , Lin Zhi Wu
  • *Corresponding author for this work
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

In this paper, the behavior of three parallel non-symmetric permeable cracks in a piezoelectric/piezomagnetic material plane subjected to anti-plane shear stress loading was studied by the Schmidt method. The problem was formulated through Fourier transform into three pairs of dual integral equations, in which unknown variables are jumps of displacements across the crack surfaces. To solve the dual integral equations, the jumps of displacements across the crack surfaces were directly expanded as a series of Jacobi polynomials. Finally, the relations among the electric displacement, the magnetic flux and the stress fields near the crack tips can be obtained. The results show that the stress, the electric displacement and the magnetic flux intensity factors at the crack tips depend on the lengths and spacing of cracks. It was also revealed that the crack shielding effect is present in piezoelectric/piezomagnetic materials.

Original languageEnglish
Pages (from-to)965-979
Number of pages15
JournalArchive of Applied Mechanics
Volume79
Issue number10
DOIs
StatePublished - Oct 2009

Keywords

  • Couple field state
  • Crack jump
  • Crack shielding effect
  • Non-symmetric cracks
  • Piezoelectric/piezomagnetic materials

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