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Dynamic Propagation of a Interface Crack in Functionally Graded Layers under Anti-plane Shear

  • 신정우 (한국항공우주연구원 세부계통팀) ;
  • 이영신 (충남대학교 기계설계공학과) ;
  • 김성찬 (한국항공우주연구원 세부계통팀)
  • 발행 : 2010.04.08

초록

The dynamic propagation of an interface crack between two dissimilar functionally graded layers under anti-plane shear is analyzed using the integral transform method. The properties of the functionally graded layers vary continuously along the thickness. A constant velocity Yoffe-type moving crack is considered. Fourier transform is used to reduce the problem to a dual integral equation, which is then expressed to a Fredholm integral equation of the second kind. Numerical values on the dynamic energy release rate (DERR) are presented. Followings are helpful to increase of the resistance of the interface crack propagation of FGM: a) increase of the gradient of material properties; b) increase of the material properties from the interface to the upper and lower free surface; c) increase of the thickness of FGM layer. The DERR increases or decreases with increase of the crack moving velocity.

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