The Waveform Control and Blowhole Generation in the Wave Pulse MIG Welding for Galvanized Steel Sheets

아연도금강판에 대한 중첩펄스 MIG 용접에서의 파형제어와 기공 발생 특성

  • Cho Sang-Myung (Course of Materials Processing Eng., Div. of Materials Science & Eng., Pukyong National University) ;
  • Kim Ki-Jung (Electron Beam Weld R&D Center, Halla Electron Beam Technology Inc.) ;
  • Lee Byung-Woo (Course of Materials Processing Eng., Div. of Materials Science & Eng., Pukyong National University)
  • 조상명 (부경대학교 신소재공학부 소재프로세스공학전공) ;
  • 김기정 ((주)한라이비텍 기술연구소) ;
  • 이병우 (부경대학교 신소재공학부 소재프로세스공학전공)
  • Published : 2005.02.01

Abstract

Recently, application of arc welding to galvanized carbon steel sheet is on the increasing Ould in the fields of automobile and construction industries. In arc welding process, zinc is evaporated in weld pool, even under the appropriate welding condition and produce blowhole and/or pit. Zinc gas cause instability of arc and increase spatter and fume. This research is purposed to minimize the heat-input and the formation of porosities in the welded joint of the galvanized carbon steel sheet using variable polarity AC wave pulse MIG welding system. An appropriate welding condition which showed low spatter and good bead appearance was acquired by applying the AC pulse MIG welding machine to DC duplicated MIG welding with the solid wire. When oxygen gas was added to shield gas of MIG welding for galvanized steel sheet, arc length was increased and arc stability was improved. In the AC duplicated welding, the loss of galvanized layer was decreased as the amount of heat-input was decreased when the EN ratio was increased under the condition that average welding current was evenly set.

Keywords

References

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