Fatigue Crack Propagation Life of Partially Penetrated Butt Welds in High Strength Steel

고장력 강판 부분용입 맞대기 용접부의 피로균열진전수명 평가

  • Han, Seung-Ho (Dept. of Structural System Engineering, Korea Institute for Machinery and Materials) ;
  • Shin, Byung-Chun (Dept. of Structural System Engineering, Korea Institute for Machinery and Materials) ;
  • Lee, Woong (Ground Systems Development Centre, Agency for Defence Development) ;
  • Choi, Jeon-Ho (System Development Team, ROTEM Company)
  • 한승호 (한국기계연구원 구조연구부) ;
  • 신병천 (한국기계연구원 구조연구부) ;
  • 이웅 (국방과학연구소) ;
  • 최전호 ((주)로템 체계개발팀)
  • Published : 2003.02.01

Abstract

Fatigue behaviour of partially penetrated butt-welded joints in high strength steel plates, in which crack-like structural defect, i.e. lack of penetration(LOP), is inevitably introduced during welding processes, was investigated. Fatigue lives of two types of welded joints, namely X-grooved and K-grooved joints, were experimentally determined first. Observed fatigue crack propagation behaviours of the partially penetrated butt-welds were interpreted through considering 3-dimensional semi-elliptical crack shape in front of the LOP. Based on such interpretation, a fracture mechanical method to estimate stress intensity factors at the crack tip was proposed. Since the fatigue lift of the partially penetrated butt-welds was strongly influenced by the ratio of size of the LOP to thickness, D/t, the D/t was used as a main parameter to calculate the fatigue lift by using the proposed method. Comparison of the fatigue lift obtained experimentally and analytically agreed well with each other. Hence it is suggested that the method used in this work to predict fatigue lift of the partially penetrated butt-welds can be applied to real cases with improved lift-prediction capability.

Keywords

References

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