Prediction of Fatigue Crack Propagation Life under Constant Amplitude and Overloading Condition

일정진폭 및 과대하중 하에서의 피로 균열 성장 수명 예측

  • 이억섭 (인하대학교 기계ㆍ항공ㆍ자동화 공학부) ;
  • 김승권 (인하대학교 대학원 기계공학전공)
  • Published : 1998.10.01

Abstract

Ship structures and aircraft structures are consisted of thin sheet alloy, so it is very important to understand the characteristics of fatigue crack propagation of that material and to establish the data base. The data for fatigue crack propagation behavior scatter very much even under identical experimental conditions with constant loading. The behavior of fatigue crack propagation under regular and irregular cyclic loadings is known to be highly affected by complicated factors such as plastic zone developed at the vicinity of crack tip and reduction of cross sectional area. In this paper, the controlled stress amplitude and overload fatigue crack propagation tests have been conducted to investigate the effect of varying factors such as plastic zone size near the crack tip and area reduction factor (AF) on the fatigue crack propagation behavior A better simulation of fatigue crack propagation behavior is found to be obtainable by using Wheeler and Willenborg models with AF effect.

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