GMA용접에서 와이어 탈산원소 손실 및 용접금속 산소 변화 연구

A Study on the Variation of Elements Loss of Wires and Oxygen Content of Weld Metal in GMAW

  • 방국수 (부경대학교 공과대학 생산가공공학과) ;
  • 장웅성 (포항산업과학연구원 접합가공연구팀)
  • 발행 : 1998.04.01

초록

The effects of welding conditions of gas metal arc welding on the elements loss of solid wire, oxygen content and impact toughness of weld metals were studied. Deoxidizing elements loss was increased with increase of arc voltage in both short-circuit transfer mode and globular transfer mode. It is believed that increase of arc voltage results in increase of reaction time between elements in the droplet and surrounding gas at the end of wire and in the arc column. Based on the thermodynamic equilibrium model, the oxygen content of weld metal can be predicted with the content of silicon and manganese as following : [%O] = $K([%Si][%Mn])^{-0.25}$, K = -15518/T+6.01. The equilibrium temperature was dependent on shielding gas, and it was 187$0^{\circ}C$ for $CO_2$ gas and 180$0^{\circ}C$ for 20%$CO_2$-80%Ar gas. The oxygen content of weld metal which shows maximum impact toughness was varied with deoxidizing alloy system of wires, 0.041 wt% for Si-Mn type wire and 0.026 wt% for Si-Mn-Ti type wire.

키워드

참고문헌

  1. Effect of Titanium in Steel Electrode Wire for $CO_2$ Arc Welding on the Usability and Mechanical Properties of Weld Metal, IIW Doc. XII-B-135-73 I. Masumoto(et al.)
  2. 溶接學會論文集 v.1 no.2 炭酸ガスア-ク溶接にぢけるスハoタの發生 荒井敏夫(外)
  3. 大韓溶接學會誌 v.14 no.5 GMA용접에 있어서 스패터 발생에 미치는 와이어 탈산원소의 영향 방국수;안영호
  4. 溶接學會誌 v.19 no.1;2 關口春次郞
  5. Kaiser-Wilhelm-Institut fur Eisen forschung F. Kober;W. Oelsen
  6. Nippon Kokan Technical Report no.47 Study on Notch Toughness of Weld Metal -Interaction of Microalloying Elements with Oxygen and Nitrogen- I. Watanabe(et al)
  7. 溶接學會誌 v.52 no.2 高强度鋼溶接金屬の靭性改善法 中西睦夫(外)
  8. The Influence of Shielding Gas Compositing on Weld Metal Properties, IIW Doc. XII-B-4-65 A. Smith
  9. BWRA Bulletin v.7 no.7 Element Transfer in $CO_2$ Welding K. Bentley
  10. Scandinavian J. of Metallurgy v.4 Factors Controlling MIG Weld Metal Chemistry O. Grong;N. Christensen
  11. Metall. Trasns. A v.17A no.10 A Model for the Silicon-Manganese Deoxidation of Steel Weld Metals O. Grong(et al)
  12. Trans. Metall. Soc. of AIME v.227 no.6 Equilibrium in the Fe-Mn-Si-O System R. Walsh;S. Ramachandran
  13. 溶接學會誌 v.50 no.12 溶接金屬の連續冷却變態擧動 におよは "す酸素の影響 伊藤慶典(外)
  14. Mechanism of Notch Toughness Improvement in Ti-B Bearing Weld Metals, IIW Doc. IX-1196-81 N. Mori(et al)
  15. Materials Science and Technology v.3 no.12 Nature of Inclusions in Steel Weld Metals and Their Influence on Formation of Acicular Ferrite A. Mills(et al)
  16. Metall. Trans. A v.17A no.9 Inclusion Phases and the Nucleation of Acicular Ferrite in Submerged Arc Weld in High Strength Low Alloy Steels J. Dowling(et al)