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A New General Fatigue Limit Diagram and Its Application of Predicting Die Fatigue Life during Cold Forging

  • Man Soo Joun
  • , Su Min Ji
  • , Wan Jin Chung
  • , Gue Serb Cho
  • , Kwang Hee Lee
    • Gyeongsang National University
    • Korea Institute of Industrial Technology
    • Ltd.

    Research output: Contribution to journalArticlepeer-review

    14 Scopus citations

    Abstract

    Traditional fatigue fracture theory and practice focus principally on structural design. It is thus too conservative and inappropriate when used to predict the high-cycle fatigue life of dies used for metal forming, especially cold forging. We propose a novel mean stress correction model and diagram to predict the high-cycle fatigue lives of cold forging dies, which focuses on the upper part of the equivalent fatigue strength curve. Considering the features of die materials characterized by high yield strength and low ductility, a straight line is assumed for the tensile yield line. To the contrary, a general curve is used to represent the fatigue strength. They are interpolated, based on the distance ratio, when finding an appropriate equivalent fatigue strength curve at the mean stress and stress amplitude between the line and curve. The approach is applied to a well-defined literature example to verify its validity and shed light on the characteristics of die fatigue life. The approach is also applied to practical forging and useful qualitative results are obtained.

    Original languageEnglish
    Article number2351
    JournalMaterials
    Volume15
    Issue number7
    DOIs
    StatePublished - 1 Apr 2022

    Keywords

    • cold forging die
    • die life prediction
    • fatigue functional exponent
    • general fatigue limit diagram
    • high cycle fatigue fracture

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