Infrared and Laser Engineering, Volume. 52, Issue 2, 20220753(2023)
Development status of large-scale application of laser cleaning technology (invited)
[1] [1] Ion J. Laser Processing of Engineering Materials: Principles, Procedure Industrial Application[M]. Amsterdam: Elsevier, 2005.
[2] S M Bedair, Jr H P Smith. Atomically clean surfaces by pulsed laser bombardment. Journal of Applied Physics, 40, 4776-4781(1969).
[3] [3] Asmus J F, Murphy C G, Munk W H. Studies on the interaction of laser radiation with art artifacts[C]Developments in Laser Technology II. SPIE, 1974, 41: 1930.
[4] [4] Tong Y Q, Ren X D. They Technology of Nanosecond Pulse Laser Cleaning[M]. Beijing: Science Press, 2019. (in Chinese)
[5] Y W Zheng, B S Luk’yanchuk, Y F Lu, et al. Dry laser cleaning of particles from solid substrates: experiments and theory. Journal of Applied Physics, 90, 2135-2142(2001).
[6] Z L Lei, Z Tian, Y B Chen. Laser cleaning technology in industrial fields. Laser & Optoelectronics Progress, 55, 030005(2018).
[7] [7] Bäuerle D. Laser Processing Chemistry[M]. Berlin: Springer Science & Business Media, 2013.
[8] A C Tam, W P Leung, W Zapka, et al. Laser-cleaning techniques for removal of surface particulates. Journal of Applied Physics, 71, 3515-3523(1992).
[9] Z Li, X Chen, S Yang, et al. Removal mechanism of liquid-assisted nanosecond pulsed laser cleaning TA15 titanium alloy oxide film. Journal of Materials Research and Technology, 19, 4986-4997(2022).
[10] A Li, L W Wang, S Guo, et al. Advances in signal enhancement mechanism and technology of laser induced breakdown spectroscopy. Chinese Optics, 10, 619-640, 703(2017).
[11] A Kumar, M Prasad, R B Bhatt, et al. Laser shock cleaning of radioactive particulates from glass surface. Optics and Lasers in Engineering, 57, 114-120(2014).
[12] N Zong, W M Hu, Z M Wang, et al. Research progress on laser-produced plasma light source for 13.5 nm extreme ultraviolet lithography. Chinese Optics, 13, 28-42(2020).
[13] Y L Jiang, Y Y Ye, G R Zhou, et al. Research on laser paint removing of aircraft surface. Infrared and Laser Engineering, 47, 1206003(2018).
[14] [14] SCHLETT J. Laser paint removal takes off in aerospace [EBOL]. (20161118)[20221026]. https:www.photonics.coma61353Laser_Paint_Removal_Takes_Off_in_Aerospace.
[15] [15] XYREC proofs speed of paint stripping is commercially viable [EBOL]. (20210729)[20221026]. https:www.xyrec.comxyrecproofsspeedofpaintstrippingiscommerciallyviable..
[16] H Zhao, Y Qiao, X Du, et al. Laser cleaning performance and mechanism in stripping of Polyacrylate resin paint. Applied Physics A, 126, 1-14(2020).
[17] G Zhu, S Wang, W Cheng, et al. Corrosion and wear performance of aircraft skin after laser cleaning. Optics & Laser Technology, 132, 106475(2020).
[18] J Wang, Y Yang, J Qi, et al. Thermodynamic simulation, surface morphology and bending property of carbon fiber reinforced polymer composite material subjected to laser cleaning. Optics & Laser Technology, 152, 108099(2022).
[19] D M Ba, Y C Xiong, C Q Li, et al. High frequency pulse laser removal technology for damaged part of carbon fiber reinforced plastics. China Surface Engineering, 32, 122-131(2019).
[20] Z Li, D Zhang, X Su, et al. Removal mechanism of surface cleaning on TA15 titanium alloy using nanosecond pulsed laser. Optics & Laser Technology, 139, 106998(2021).
[21] J H Chen, P Wen, B H Chang, et al. Laser cleaning of titanium alloy and its effect on laser welding porosity. China Mechanical Engineering, 31, 379-383(2020).
[22] [22] 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. http:kns.cnki.kcmsdetail12.1261.TN.20220409.1621.004.html. (in Chinese)
[23] G X Chen, T J Kwee, K P Tan, et al. High-power fiber laser cleaning for green shipbuilding. Journal of Laser Micro/Nanoengineering, 7, 249-253(2012).
[24] J E Kim, M K Song, M S Han, et al. A study on the application of laser cleaning process in shipbuilding industries using 100 W fiber laser. Journal of Mechanical Science and Technology, 35, 1421-1427(2021).
[25] J H Gan. U. S. Navy MRO center tests laser cleaning tech for aircraft components. Aviation Maintenance & Engineering, 18(2021).
[26] Z L Lei, H R Sun, Y B Chen, et al. Elimination of rusting layer from high-strength steel surface using different laser cleaning methods. Chinese Journal of Lasers, 46, 0702003(2019).
[28] C Song, W Cui. Review of underwater ship hull cleaning technologies. Journal of Marine Science and Application, 19, 415-429(2020).
[29] S Zimbelmann, B Emde, Waldegge T H Von, et al. Interaction between laser radiation and biofouling for ship hull cleaning. Procedia CIRP, 111, 705-710(2022).
[30] Y Lu, Y Ding, M L Wang, et al. An environmentally friendly laser cleaning method to remove oceanic micro-biofoulings from AH36 steel substrate and corrosion protection. Journal of Cleaner Production, 314, 127961(2021).
[31] A Y Bykanova, V V Kostenko, A Y Tolstonogov. Development of the underwater robotics complex for laser cleaning of ships from biofouling: experimental results. IOP Conference Series: Earth and Environmental Science, 459, 032061(2020).
[33] W Wang, J Shen, W Liu, et al. Effect of laser energy density on surface physical characteristics and corrosion resistance of 7075 aluminum alloy in laser cleaning. Optics & Laser Technology, 148, 107742(2022).
[34] S Y Dong, C Q Song, S X Yan, et al. Effect of laser cleaning pretreatment on laser welding formation of 7A52 aluminum alloy. Journal of Academy of Armored Force Engineering, 31, 100-105(2017).
[35] Xiaohui Han, Xiansheng Qi. Engineering application and prospect of high-efficiency and high-quality laser cleaning technology for rail passenger cars. MM Metal Forming, 11-14(2020).
[36] S X Shi. Research on automatic cleaning system of metro vehicle wheel based on robot technology. Machine Design and Manufacturing Engineering, 50, 31-34(2021).
[37] B Ye. Research on automatic paint removal method of metro wheelsets based on compound laser. Applied Laser, 42, 125-131(2022).
[38] S Zhuang, S Kainuma, M Yang, et al. Characterizing corrosion properties of carbon steel affected by high-power laser cleaning. Construction and Building Materials, 274, 122085(2021).
[39] K H Leitz, H Koch, A Otto, et al. Numerical simulation of process dynamics during laser beam drilling with short pulses. Applied Physics A, 106, 885-891(2012).
[40] Y S Wang, C G N Wang. Laser cleaning and protection of industrial heritage steel structure. Journal of Shenzhen University Science and Engineering, 37, 466-473(2020).
[41] J Y Dai, F Q Tang. Design and Implementation of laser cleaning control system based on FPGA. Chinese Journal of Lasers, 47, 0402005(2020).
[42] Y H Zhang, F Q Tang, X L Gu, et al. Design of two-dimensional laser-cleaning system. Chinese Journal of Lasers, 48, 2202007(2021).
[43] [43] Wang J. Research on surface reconstruction method of large components f laser cleaning[D]. Jinan: Qilu University of Technology, 2022. (in Chinese)
[44] Q Yan, X Shen. Design of focal length adaptive laser cleaning control system based on STM32. Microcontrollers & Embedded Systems, 19, 84-87(2019).
[45] C Q Pan, X W Zhu, W F Yang, et al. Design of robotic laser shape-follow cleaning control system for large freeform surface workpiece. Applied Laser, 41, 1280-1286(2021).
[46] X Xie, Q Huang, J Long, et al. A new monitoring method for metal rust removal states in pulsed laser derusting via acoustic emission techniques. Journal of Materials Processing Technology, 275, 116321(2020).
[47] Y Q Tong, Y K Zhang, H B Yao, et al. Real-time monitoring system for laser derusting based on plasma intensity. Chinese Journal of Lasers, 38, 1003009(2011).
[48] W Wang, L Sun, Y Lu, et al. Laser induced breakdown spectroscopy online monitoring of laser cleaning quality on carbon fiber reinforced plastic. Optics & Laser Technology, 145, 107481(2022).
[49] T Y Shi, L Z Zhou, C M Wang, et al. Machine vision-based real-time monitor system for laser cleaning aluminum alloy. Chinese Journal of Lasers, 46, 0402007(2019).
[50] X Zhang, M D Wang, J C Liu, et al. Laser intelligent rust removal based on machine vision. Laser & Optoelectronics Progress, 58, 0814001(2021).
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Yuhong Jiang, Yuyang He, Yonghong Fu, Jinghu Ji, Yanqun Tong. Development status of large-scale application of laser cleaning technology (invited)[J]. Infrared and Laser Engineering, 2023, 52(2): 20220753
Category: Special issue-Laser cleaning technology$Review articles
Received: Oct. 26, 2022
Accepted: --
Published Online: Mar. 13, 2023
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