Analysis of Stress Intensity Factors for Circular arc Cracks by Boundary Element Method

경계요소법에 의한 아크균열의 응력확대계수 해석

  • 백열선 (김천대학 소방안전관리과) ;
  • 이장규 (인천대학교 기계공학과 대학원) ;
  • 우창기 (인천대학교 기계공학과)
  • Published : 1999.12.01

Abstract

In this paper, A circular arc crackered plate in biaxially stretched sheets was investigated in the boundary element method. The applications of fracture mechanics have traditionally concentrated on crack problems under an mode I, straight crack. However, many service failures occur from growth of cracks subjected to mixed mode loadings. A rectangular plate with arc crack or slanted central crack, under biaxial tensile loading, was treated analytically and also solved numerically. The Results from BEM applying different loading conditions, crack length (a/W), arc angle($\alpha$) are presented and discussed. The stress intensity factors are evaluated by the techniques of the J-integral. The decomposition method, used to decouple the stress intensity factors in mixed mode problems, is implemented by a considering a small circular contour path around each crack tip. The BIE method was successfully applied to a circular arc crackerd plate problem, also slanted centre cracked plate under mixed mode.

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