Fatigue Fracture Behavior in Super-Rapid induction Quenched Spheroidal Graphite Cast Iron

고주파유도로를 이용한 초급속열처리 구상흑연주철의 피로파괴특성

  • 지정근 (강원대학교 기계공학과) ;
  • 김진학 (강원대학교 기계공학과) ;
  • 김민건 (강원대학교 기계공학과)
  • Published : 1999.12.31

Abstract

Rotary bending fatigue tests were carried out to investigate the fatigue behavior of high performance ductile cast iron experienced super rapid induction heat treatment. The effect of super rapid induction treatment on fatigue limit was experimentally examined with the special focus on the variation surface microstructure and the fatigue crack initiation and propagation through fractography. Main results obtained are as follows. By super rapid induction treatment in FCD500, the martensite structure obtained through conventional quenching heat treatment was confirmed on the specimen surface. The fatigue crack initiation in the hardened surface layer was restricted by the martensite structure and compressive residual stress. Thus, it could be interpreted that the initiation stress would be increased by the improvement of surface structure. The fatigue crack propagation in the hardened layer was retarded by the presence of the globular shape martensite around the graphite nodule and compressive residual stress. The crack propagation path has shown zigzag pattern in the hardened surface layer.

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