Wrinkle Defect of Low Carbon Steel in Wire Rod Rolling

저탄소강 선재 압연의 주름성 결함

  • Kim H. Y. (Department of Mechanical Engineering, KAIST) ;
  • Kwon H. C. (Rolling Technology and Process Control Research Group, POSCO Technical Research Laboratories) ;
  • Byon S. M. (Rolling Technology and Process Control Research Group, POSCO Technical Research Laboratories) ;
  • Park H. D. (Rolling Technology and Process Control Research Group, POSCO Technical Research Laboratories) ;
  • Im Y. T. (Department of Mechanical Engineering, KAIST)
  • 김학영 (기계공학과, 한국과학기술원) ;
  • 권혁철 (공정제어연구그룹, 포스코 기술연구소) ;
  • 변상민 (공정제어연구그룹, 포스코 기술연구소) ;
  • 박해두 (공정제어연구그룹, 포스코 기술연구소) ;
  • 임용택 (기계공학과, 한국과학기술원)
  • Published : 2004.08.01

Abstract

This study examined the cause of the wrinkle defect which is frequently encountered in wire rod rolling of low carbon steel$(C0.08\~0.13wt.\%)$. Even a small defect on the surface of rolled bars can easily develop into fatal cracks during cold heading process of low carbon steel, and it is therefore necessary to minimize inherent defects on the surface of hot rolled bars. Hot rolling process of low carbon steel was analyzed to identify the cause of the wrinkle defect in conjunction with FE analysis. The integrated analysis revealed that the wrinkle defect initiated in the first stage of rolling, and it was at the billet edge where severe deformation and drastic temperature drop were present. To elucidate the micro-mechanical mechanism of the wrinkle defect, hot compression tests were carried out at various temperatures and strain rates using Gleeble-3800. The surface profile of the each other compressed specimens was compared, and rough surface lines were observed at relatively low temperatures. Those surface defects can develop into wrinkles during multi-pass rolling. To control the wrinkle defect in rolling, it is necessary to design an adequate caliber which can minimize the loss of ductility, and thereby prevent flow localization. To use the result of this study fur other steels, the quantitative measure of the wrinkle defect and flow localization parameter should be proposed.

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