The Effect of Fatigue Fracture in shot peening Marine structural steel at stress ratio

쇼트피닝 가공된 해양구조용강의 피로파괴에 미치는 응력비의 영향

  • Park, Kyoung-Dong (Pukyong National University DEPT, of Mechanical Engineering) ;
  • Han, Kun-Mo (Dong-A University School of Civil and Ocean Engineering) ;
  • Jin, Young-Beom (Pukyong National University DEPT, of Mechanical Engineering)
  • 박경동 (부경대학교 기계공학부) ;
  • 한건모 (동아대학교 해양.토목공학부) ;
  • 진영범 (부경대학교 기계공학부 대학원)
  • Published : 2003.10.24

Abstract

Rencentely, the request for the light weight is more incresed in the area of industrial environment and machinery and consistent effort is needed to accomplish high strength of material for the direction of light weight. we got the following characteristic from crack growth test carried out in the range of stress ration of 0.1, 0.3 and 0.6 by means of opening mode displacement. At the content stress ratio, the threshold stress intensity factor crack range ${\Delta}K_{th}$in the early stage of fatigue crack growth (Region I) and dtress intensity factor range ${\Delta}K$ in the stable of fatigue crack growth (Region II) with an increase in ${\Delta}K$. Fatigue life shows more improvement in the Shot-peened material than in the Un-peening material. And compressive residual stress of surface on the Shot peening processed operate resistance force of fatigue. So we can obtain fallowings. (1) The fatigue crack growth rate on stage II is conspicuous with the size of compressive residual stress and is depend on Paris equation. (2) Although the maxium compressive residual stress is deeply and widely formed from surface, fatigue life does not improve than when maxium compressive residual stress is formed in surface. (3) The threshold stress intensity factor range is increased with increasing compressive residual stress.

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