+Advanced Search
  • Article
  • | |
  • Metrics
  • |
  • Reference [17]
  • |
  • Related
  • | | |
  • Comments
    Abstract:

    In order to improve the quality of underwater wet laser welding, a self-designed flux were successfully applied to the work of underwater wet welding 5mm thick 0Cr25Ni6Mo3N duplex stainless steel which existed at the 6mm depth in simulated seawater by laser beam. After welding, the microstructure of the top, middle, bottom weld and heat-affected zone of the welded joint was observed by metallographic microscope, and the mechanism of microstructure evolution was deduced. The austenite phase ratio in each area of ??the welded joint was calculated, and we have found that the austenite in most areas is significantly reduced, which deviates from the balance value of the base metal. The reason for this problem is analyzed in combination with the microstructure and morphology characteristics of each area. Positive suggestions are given to promote the growth of austenite and maintain the balance of phases. After the experiment, the failure analysis of the tensile fracture type and friction and wear behavior of the weld was carried out. The average tensile strength of the sample is 810.7MPa, which is 95.3% of the tensile strength of base metal and the average elongation of these samples is 34.4%. The microstructure of the fracture shows obvious cleavage step and some dimples, which belongs to the mixed fracture type. The friction coefficient of the weld is about 0.557, and the friction reduction is better than that of the base metal. The wear failure mechanism is three-body abrasive wear.

    Reference
    [1]Wang K, Jiao X D, Zhu J L et al. Advances in Mechanical Engineering [J], 2022, 14(1):1-12.
    [2]Zhao Yan(赵岩),Wang Xu (王旭), Chen Dayu(陈达宇) et al. Rare Metal Materials and Engineering(稀有金属材料与工程) [J], 2023, 52(2):535-543.
    [3]Abhiram V, Radhika N. Advances in Materials and Processing Technologies [J]. 2023, 1-38.
    [4]Fan Y, Liu TG, Xin L et al. Journal of Nuclear Materials [J]. 2020, 544: 152693.
    [5]Sun G F, Wang Z D, Lu Y, et al. Chinese Journal of Mechanical Engineering [J]. 2022, 35(01): 42-60.
    [6]Guo N, Cheng Q, Zhang X, et al. Materials [J]. 2019, 12(17): 2703.
    [7]Fu Y, Guo N, Cheng Q, et al. Journal of Materials Research and Technology [J]. 2020, 9(6): 15648-15661
    [8]Zhang X D, Chen W Z, Ashiidab E, et al. Optics and Lasers in Engineering [J]. 2004, 41(5): 717- 730.
    [9]Parag M S, Suvradip M, Muvvala G. Optik [J]. 2021, 242: 167272.
    [11]Guo N, Xing X, Zhao H Y et al. Materials Design [J]. 2017, 115: 112-120.
    [12]Qin Hang(秦航), Cai Zhihai(蔡志海), Zhang Ping(张平) et al. China Surface Engineering(中国表面工程)[J]. 2019, 32(3): 130-137.
    [13]Qin Hang(秦航), Cai Zhihai(蔡志海), Zhu Jialei(朱加雷) et al. Transactions of the China Welding Institution(焊接学报) [J]. 2019, 40(12): 143-148.
    [14]Lu B, Cui X, Jiang L et al. Surface and Coatings Technology [J], 2019, 359: 125-131 .
    [15]Zhou Chao(周超), Li Haixin(李海新), Yang Zhenlin(杨振林) et al. Welding Joining(焊接)[J]. 2021, 06:34-39 60 63.
    [16]Feng X R, Cui X, Zheng W et al. Optics Laser Technology [J]. 2019,114: 140-145.
    [17]Zhan X H, Yi P, Liu Y C et al. Proceedings of the Institution of Mechanical Engineers Part C: Journal of Mechanical Engineering Science [J]. 2020, 34(7):1382-1392.
    [18]Ma Wenlin(马文林), Zhao Jian(赵健), Wang Fubo(王府伯). Tribology(摩擦学学报) [J]. 2023, 43(3): 314-324.
    Related
    Cited by
    Comments
    Comments
    分享到微博
    Submit
Get Citation

[You Jia Yu, Hu Chen Yu, Li Yong Qing, Cai Zhi Hai, Li Zhu Ying. Microstructure and Failure Behaviors of Duplex Stainless Steel Welds by Underwater Wet Laser Welding[J]. Rare Metal Materials and Engineering,2024,53(8):2314~2320.]
DOI:10.12442/j. issn.1002-185X.20230426

Copy
Article Metrics
  • Abstract:172
  • PDF: 457
  • HTML: 0
  • Cited by: 0
History
  • Received:July 10,2023
  • Revised:August 18,2023
  • Adopted:August 24,2023
  • Online: August 20,2024
  • Published: August 08,2024