혼합모드(I+II)하에서 각도와 균열길이 변화를 갖는 피로균열 전파 거동

Behaviour of Fatigue Crack Propagation under Mixed Mode(I+II) with variation of Angle and Crack Length

  • 정의효 (경희대학교 기계공학과 대학원)
  • 발행 : 2000.10.01

초록

The applications of fracture mechanics have traditionally concentrated on cracks loaded by tensile stresses, and growing under an opening or mode I mechanism. However, many cases of failures occur from growth of cracks subjected to mixed mode loading. Several criteria have been proposed regarding the crack growth direction under mixed mode loadings. This paper is aimed at investigation of fatigue crack growth behaviour under mixed mode(I+II) with variation of angle and pre-crack length in two dimensional branched type precrack. Especially the direction of fatigue crack propagation was predicted and effective stress intensity factor was calculated by finite element analysis(FEA. In this paper, the maximum tangential stress(MTS) criterion was used to predict crack growth direction. Not only experiment but also finite element analysis was carried out and the theoretical predictions were compared with experimental results.

키워드

참고문헌

  1. Engineering Fracture Mechanics v.37 no.6 Experimental and finite element studies on mixed I and mixed (Ⅰand Ⅱ) stable crack growth -Ⅱ. finite element analysis S. K. Maiti;D. K. Mahanty
  2. Engineering Fracture Mechanics v.50 no.5/6 Combination of finite element analysis and analytical crack tip solution for mixed mode fracture Peter M. Haefele;James D. Lee
  3. Engineering Fracture Mechanics v.55 no.6 Mixed mode fatigue crack growth : a literature survey J. Qian;A. Fatemi
  4. Fatigue & Fracture of Engineering Materials and Structure v.15 no.10 Review of fatigue crack growth in steels under mixed mode Ⅰand Ⅱ loading P. E.; Bold;M. W. Brown;R. J. Allen
  5. Elementary engineering fracture mechanics(4th edition) David Broek
  6. Engineering Fracture Mechanics v.37 no.6 Experimental and finite element studies on mixed Ⅰ and mixed (Ⅰand Ⅱ) stable crack growth - . Experimental S. K. Maiti;D. K. Mahanty
  7. Transactions of the Japan Society of Mechanical Engineer A v.53 no.486 Crystallographic orientation dependence of fatigue crack propagation in Fe-3%Si (Characteristics of crack propagation at an early stage under KⅠ+ KⅡ mixed mode loading) Takayuki Suzuki;Takahi Uno;Taisuke Oyanagi;Ikuhiko Hayashi
  8. Engineering Fracture Mechanics v.6 Fatigue crack propagation from a crack inclined to the cyclic tensile axis Tanaka, K.