The Infl uence of Crack Propagation Angle on the Stress Intensity Factors (SIFs) of Cracked Tubular T-Joints

논문상세정보
    • 저자 Hazem Samih Mohamed Fei Gao Hong Ping Zhu
    • 제어번호 106333709
    • 학술지명 International Journal of Steel Structures
    • 권호사항 Vol. 18 No. 2 [ 2018 ]
    • 발행처 한국강구조학회
    • 자료유형 학술저널
    • 수록면 391-401
    • 언어 English
    • 출판년도 2018
    • 등재정보 KCI등재
    • 소장기관 경북대학교 중앙도서관 경상국립대학교 도서관 계명대학교 동산도서관 동국대학교 중앙도서관 부산대학교 중앙도서관 연세대학교 학술문화처 도서관 연세대학교 학술문화처 도서관 영남대학교 과학도서관
    • 판매처
    유사주제 논문( 0)

' The Infl uence of Crack Propagation Angle on the Stress Intensity Factors (SIFs) of Cracked Tubular T-Joints' 의 참고문헌

  • The development of an accurate model for the fatigue assessment of doubly curved cracks in tubular joints
    Bowness, D. [1995]
  • Stress intensity factors for a surface crack in a tubular T-joint
  • Stress intensity factor for a tubular T-joint with grouted chord
    Shen, W. [2012]
  • Stress concentration factors for tubular Y-and T-joints
  • Review of fatigue strength assessment of nonwelded and welded structures based on local parameters
    Radaj, D. [1996]
  • Parametric equation of stress intensity factor for tubular K-joints under in-plane bending load
    Shao, Y. B. [2005]
  • Parametric equation of stress intensity factor for tubular K-joint under balanced axial loads
    Shao, Y. B. [2005]
  • Numerical models verification of cracked tubular T, Y and K-joints under combined loads
    Lee, C. K. [2005]
  • Mode mixity for tubular K-joints with weld toe cracks
    Qian, X. [2006]
  • Mode mixity for circular hollow section X joints with weld toe cracks
    Qian, X. [2005]
  • Inelastic line springs in non-linear analysis of cracked tubular joints
  • Fracture mechanics: Fundamentals and applications (3rd ed.)
  • Fracture mechanics based predictions of the effects of the size of tubular joint test specimens on their fatigue life
    Ritchie, D. [1989]
  • Fatigue performance of tubular X-joints with PJP + welds: II-Numerical investigation
    Qian, X. [2013]
  • Fatigue performance of tubular X-joints with PJP + welds: I-Experimental study
    Qian, X. [2013]
  • Fatigue performance of cracked tubular T joints under combined loads. II: Numerical
    Lie, S. T. [2004]
  • Fatigue crack curvature under the weld toe in an offshore tubular joint
    Bowness, D. [1998]
  • Fatigue analysis of welded joints: State of development
    Fricke, W. [2003]
  • Estimation of stress intensity factor solutions for weld toe cracks in offshore tubular joints
  • Crack modeling in FE analysis of circular tubular joints
    Cao, J. J. [1998]
  • Applying strain energy density factor theory to propagation estimating of surface crack in tubular T-joints
    Qian, R. J. [1996]
  • Analysis of stress intensity factor (SIF) for cracked tubular K-joints subjected to balanced axial load
    Shao, Y. B. [2006]
  • An empirical stress-intensity factor equation for the surface crack
    Newman, J. [1981]
  • A general fracture mechanics model for a cracked tubular joint derived from the results of a finite element parametric study
  • A finite element study of stress fields and stress intensity factors in tubular joints
    Bowness, D. [1995]