Effects of MnN powder on the microstructure and properties of high nitrogen steel joint via laser-arc hybrid welding. (June 2021)
- Record Type:
- Journal Article
- Title:
- Effects of MnN powder on the microstructure and properties of high nitrogen steel joint via laser-arc hybrid welding. (June 2021)
- Main Title:
- Effects of MnN powder on the microstructure and properties of high nitrogen steel joint via laser-arc hybrid welding
- Authors:
- Lei, Zhenglong
Li, Bingwei
Wu, Shibo
Chen, Yanbin
Xiong, Ying - Abstract:
- Highlights: High nitrogen steel weld was nitrided by MnN powder accompanied with N pores. The N content increased by 17%, but the distribution of N was uneven. N pores were absorbed inhibited by Ti and form the precipitation phase (TiN). Abstract: The welding of high nitrogen steel (HNS) was accompanied with N loss and porosity, leading to the mechanical properties degradation. In this study, laser-arc hybrid welding of HNS with MnN powder was evaluated. The experimental results indicated that the addition of MnN powder could increase the N content by 17% compared with the non-nitride joints. And no MnN particles were detected in the joint. There were mainly two kinds of pores in the weld of HNS. The irregular pore was suppressed by adjusted welding speed and laser power. The degree of austenitization and the N pores in joint increased with the increase in the N content, because the MnN powder could promote the formation of N pores. The reactive pore was originated from the thermal decomposition of the MnN powder with a temperature more than 800℃. And the micro-pore was precipitated along the interface between austenite and ferrite because of the supersaturated N in ferrite. Adding Ti could give priority to the formation of the TiN phase and inhibit the formation of N pores. The tensile strength of the joint was increased to 1072 MPa. The impact property of the nitrided joint was also slightly improved. However, the tensile strength of the arc zone was better than that ofHighlights: High nitrogen steel weld was nitrided by MnN powder accompanied with N pores. The N content increased by 17%, but the distribution of N was uneven. N pores were absorbed inhibited by Ti and form the precipitation phase (TiN). Abstract: The welding of high nitrogen steel (HNS) was accompanied with N loss and porosity, leading to the mechanical properties degradation. In this study, laser-arc hybrid welding of HNS with MnN powder was evaluated. The experimental results indicated that the addition of MnN powder could increase the N content by 17% compared with the non-nitride joints. And no MnN particles were detected in the joint. There were mainly two kinds of pores in the weld of HNS. The irregular pore was suppressed by adjusted welding speed and laser power. The degree of austenitization and the N pores in joint increased with the increase in the N content, because the MnN powder could promote the formation of N pores. The reactive pore was originated from the thermal decomposition of the MnN powder with a temperature more than 800℃. And the micro-pore was precipitated along the interface between austenite and ferrite because of the supersaturated N in ferrite. Adding Ti could give priority to the formation of the TiN phase and inhibit the formation of N pores. The tensile strength of the joint was increased to 1072 MPa. The impact property of the nitrided joint was also slightly improved. However, the tensile strength of the arc zone was better than that of the laser zone due to the uneven distribution of N. … (more)
- Is Part Of:
- Optics & laser technology. Volume 138(2021)
- Journal:
- Optics & laser technology
- Issue:
- Volume 138(2021)
- Issue Display:
- Volume 138, Issue 2021 (2021)
- Year:
- 2021
- Volume:
- 138
- Issue:
- 2021
- Issue Sort Value:
- 2021-0138-2021-0000
- Page Start:
- Page End:
- Publication Date:
- 2021-06
- Subjects:
- High nitrogen steel -- MnN powder -- N Pores -- TiN
Optics -- Periodicals
Lasers -- Periodicals
Electronic journals
621.366 - Journal URLs:
- http://www.sciencedirect.com/science/journal/00303992 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.optlastec.2020.106877 ↗
- Languages:
- English
- ISSNs:
- 0030-3992
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 6273.440000
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