4.4 Article

Promoting austenite formation in laser welding of duplex stainless steel-impact of shielding gas and laser reheating

期刊

WELDING IN THE WORLD
卷 65, 期 3, 页码 499-511

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s40194-020-01026-7

关键词

Duplex stainless steel; Laser welding; Shielding gas; Laser reheating; Austenite fraction

资金

  1. University West
  2. EU-project H2020-MSCA-RISE-2018, i-Weld [823786]
  3. Swedish Agency for Economic and Regional Growth through the European Union - European Development Fund

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The study found that using nitrogen as shielding gas and laser reheating pass significantly improves austenite formation and reduces nitride formation in DSS laser welds.
Avoiding low austenite fractions and nitride formation are major challenges in laser welding of duplex stainless steels (DSS). The present research aims at investigating efficient means of promoting austenite formation during autogenous laser welding of DSS without sacrificing productivity. In this study, effects of shielding gas and laser reheating were investigated in welding of 1.5-mm-thick FDX 27 (UNS S82031) DSS. Four conditions were investigated: Ar-shielded welding, N-2-shielded welding, Ar-shielded welding followed by Ar-shielded laser reheating, and N-2-shielded welding followed by N-2-shielded laser reheating. Optical microscopy, thermodynamic calculations, and Gleeble heat treatment were performed to study the evolution of microstructure and chemical composition. The austenite fraction was 22% for Ar-shielded and 39% for N-2-shielded as-welded conditions. Interestingly, laser reheating did not significantly affect the austenite fraction for Ar shielding, while the austenite fraction increased to 57% for N-2-shielding. The amount of nitrides was lower in N-2-shielded samples compared to in Ar-shielded samples. The same trends were also observed in the heat-affected zone. The nitrogen content of weld metals, evaluated from calculated equilibrium phase diagrams and austenite fractions after Gleeble equilibrating heat treatments at 1100 degrees C, was 0.16% for N-2-shielded and 0.11% for Ar-shielded welds, confirming the importance of nitrogen for promoting the austenite formation during welding and especially reheating. Finally, it is recommended that combining welding with pure nitrogen as shielding gas and a laser reheating pass can significantly improve austenite formation and reduce nitride formation in DSS laser welds.

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