The Low Cycle Fatigue Behavior of Laser Welded Sheet Metal for Different Materials

이종재료 레이저 용접 판재의 저주기 피로 특성

  • 김석환 (경희대 대학원 기계공학과) ;
  • 곽대순 (경희대 대학원 기계공학과) ;
  • 김웅찬 (경희대 대학원 기계공학과) ;
  • 오택열 (경희대 테크노공학대학)
  • Published : 2005.10.01

Abstract

In this study, low fatigue behavior of laser welded sheet metal were investigated. Before welding, the cross section of butt joint was prepared only by fine shearing without milling process. Specimens were same sheet metal and welding condition that using automobile manufacturing company at present. Butt joint of cold rolled sheet metal was welded by $CO_2$ laser. It is used that welding condition such as laser welding speed was 5.5m/sec and laser output power was 5kW for 0.8mm and 1.2mm sheet metal. The laser weldments were machined same or different thickness and same or different material. In order to mechanical properties of around welding zone, hardness test was performed. Hardness of welding bead is about 2 times greater than base material. We performed the low cycle fatigue tests for obtaining fatigue properties about thickness and the weld line direction of specimen. The results of strain controlled low cycle fatigue test indicate that all specimens occur cyclic softening, as indicated by the decrease in stress to reach a prescribed strain.

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