A Study on the Residual Stress of AISI 4140 Formed during Surface Hardening Treatment by using the CO2 Laser Beam

CO2레이저 비임을 이용한 표면경화 처리중 형성된 AISI 4140의 잔류응력에 관한 연구

  • Park, K.W. (Department of Metallurgical Engineering, Dong-A University) ;
  • Lee, J.B. (Department of Metallurgical Engineering, Dong-A University) ;
  • Han, Y.H. (Study Circle for Laser Material Processing, KIMM) ;
  • Lee, S.Y. (Department of Metallurgical Engineering, Dong-A University)
  • 박근웅 (동아대학교 금속공학과) ;
  • 이준범 (동아대학교 금속공학과) ;
  • 한유희 (한국기계연구원 레이저가공기술연구회) ;
  • 이상윤 (동아대학교 금속공학과)
  • Published : 1996.12.30

Abstract

This study has been performed to investigate into some effects of power density and traverse speed of laser beam on the microstructure, hardness and residual stress of AISI 4140 treated by laser surface hardening technique. Optical micrograph has shown that large martensite and a small amount of retained austenite in outermost surface layer and fine lath martensite in inner surface hardened layer are formed under the condition of a given power density and traverse speed. Hardness measurements have revealed that as the power density increases at a given 2.0m/min of the traverse speed, the maximum hardness values of outermost surface hardened layer is increased from Hv=635 to Hv=670. X-ray analysis for residual stress has exhibited that low compressive residual stress values are obtained in center point of the cress section of surface hardened layer with in mid point between the edge and the center point, about 1.5mm from the center point, due simply to a difference in self-quenching rate. It has been shown that the higher the power density at a given traverse speed and the olwer the traverse speed at a given power density, the more the compressive residual stress values are increased due to an increase in the input heat of laser beam.

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