Infrared and Laser Engineering, Volume. 52, Issue 2, 20220164(2023)

Effect of spot overlapping rate on surface area carbon and oxide cleaning quality of GH3030 alloy

Wei Wang1,2, Xiaoyu Wang1,2, Weijun Liu1,2、*, Fei Xing1,2, and Jing Wang3
Author Affiliations
  • 1School of Mechanical Engineering, Shenyang University of Technology, Shenyang 110870, China
  • 2Liaoning Key Laboratory of Laser Surface EngineeringTechnology, Shenyang 110870, China
  • 3Shenyang Huiyuan Automation Equipment Co., Ltd, Shenyang 110169, China
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    References(26)

    [1] G L Shan, L Wang, Y Sun, et al. Study on the leaching behavior of key metals in nickel-based single crystal superalloy scraps. Materials Reports, 35, 10134-10140(2021).

    [2] G Z Yang, Z H Wen, L Shen, et al. Game relation between grain refinement and grain coarsening in thermoplastic deformation of nickel-based superalloy and its evolution. Materials Reports, 35, 18124-18130(2021).

    [3] X Zhang, M Liu, J Mao, et al. Preparation of bond coating by PS-PVD and effect on performance of thermal barrier coating. Surface Technology, 49, 236-243(2020).

    [4] Q Wei, S S Ao, T Wang, et al. High temperature stability of electron beam welded joint of nickel base alloy GH4169. Transactions of Nonferrous Metals Society of China, 30, 2578-2585(2020).

    [5] Y F Xue, Z Y Luo, S G Han, et al. Effect of laser scanning speed of the removal quality of rust layer on carbon steel surface. Infrared and Laser Engineering, 52, 20210389(2022).

    [6] [6] Zhang R N, Wei P Y, Guo X, et al. Optimization of laser cleaning parameters evaluation of surface properties of EH36 steel [JOL]. Infrared Laser Engineering. (20220411) [20220309]. http:kns.cnki.kcmsdetail12.1261.TN.20220409.1621.004.html. (in Chinese)

    [7] C Y Li, L Qu, F Gao, et al. Composition analysis of the surface and depth distribution of metal and ceramic cultural relics by laser-induced breakdown spectroscopy. Chinese Optics, 13, 1239-1248(2020).

    [8] J M Wang, Y H Ji, Z Y Liang, et al. Damage characteristics of a 532 nm picosecond pulse laser on monocrystalline silicon. Chinese Optics, 15, 242-250(2022).

    [9] D J Wu, Y Xu, X Y Wang, et al. Experimental and theoretical study on laser cleaning Al2O3 particle on silicon wafer surface. Optics and Precision Engineering, 14, 764-770(2006).

    [10] J Z Zhou, H T Li, Q Sun, et al. Laser derusting mechanism of AH32 steel based on cleaned surface topography. Optics and Precision Engineering, 27, 1754-1764(2019).

    [11] G X Zhang, X M Hua, F Li, et al. Effect of laser cleaning process parameters on the surface roughness of 5754-grade aluminum alloy. The International Journal of Advanced Manufacturing Technology, 105, 2481-2490(2019).

    [12] H F Yang, Z H Xie, H Cui, et al. Effect of pulsed laser on surface morphology and oxygen content of 6106 aluminum alloy. Welding, 55-59(2020).

    [13] H W Zhao, Z X Zhang. Study on vacuum electron beamlaser cleaning technology before welding for GH4169. MW Metal Forming, 20-21(2018).

    [14] P P Ben, W Gu, J Hu, et al. Study of laser cleaning technology on Ni-base superalloy oxidation film before welding. Welding Technology, 50, 25-31, 106(2021).

    [15] H H Zhu, D Xia, Z Z Shi, et al. Effects of heat input technological parameters on laser cleaning of surface oxide layer of TA15. China Surface Engineering, 32, 132-139(2019).

    [16] S W Sun, Y H Chen, W Chen, et al. Laser cleaning process of TiNi alloy surface rolling oxide film. Journal of Netshape Forming Engineering, 10, 132-136(2018).

    [17] [17] China Aeronautical Materials Hbook Editial Committee. China Aeronautical Materials Hbook, Volume 2, Wrought Superalloy Cast Superalloy[M]. Beijing: Stards Press of China, 2002. (in Chinese)

    [18] C Zhou, H G Li, G Y Chen, et al. Effect of single pulsed picosecond and 100 nanosecond laser cleaning on surface morphology and welding quality of aluminum alloy. Optics and Laser Technology, 127, 106197(2020).

    [19] X J Wan. Hydrogen embrittlement of metals. Materials Protection, 12, 11-25(1979).

    [20] T Y Shi, C M Wang, G Y Mi, et al. A study of microstructure and mechanical properties of aluminum alloy using laser cleaning. Journal of Manufacturing Processes, 42, 60-66(2019).

    [21] P Y Xia, Y H Yi, A J Cai, et al. Laser cleaning process of 2219 aluminum alloy anodic oxide film before welding. Chinese Journal of Lasers, 46, 0102005(2019).

    [22] Li, Y X, C Y Li, D Wang, et al. Effect of laser scanning speeds on cleaning quality of rusted layer on Q345 steel surface. Chinese Journal of Lasers, 47, 1002010(2020).

    [23] X F Li. Influences of Cr content on oxidation behavior of two nickel-based alloy coating at high temperature. Surface Technology, 33, 37-39(2004).

    [24] Q Wang, Y C Guan, B Q Cong, et al. Laser cleaning of commercial Al alloy surface for tungsten inert gas welding. Journal of Laser Applications, 28, 022507(2016).

    [25] S C Gu, L H Zhu, Y M Duan, et al. Effect of surface roughness on high temperature friction and wear properties of large-diameter M2 high speed steel. Transactions of Materials and Heat Treatment, 41, 127-132(2020).

    [26] Z C Li, D H Zhang, X Su, et al. Removal mechanism of surface cleaning on TA15 titanium alloy using nanosecond pulsed laser. Optics and Laser Technology, 139, 106998(2021).

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    Wei Wang, Xiaoyu Wang, Weijun Liu, Fei Xing, Jing Wang. Effect of spot overlapping rate on surface area carbon and oxide cleaning quality of GH3030 alloy[J]. Infrared and Laser Engineering, 2023, 52(2): 20220164

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    Paper Information

    Category: Special issue-Laser cleaning technology$Research articles

    Received: Mar. 9, 2022

    Accepted: --

    Published Online: Mar. 13, 2023

    The Author Email:

    DOI:10.3788/IRLA20220164

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