Optical Technique, Volume. 49, Issue 1, 34(2023)
Research progress of laser paint stripping technology and its engineering application in aircraft skin paint removal
[1] [1] Xia R, Zhao J, Zhang T, et al. Detection method of manufacturing defects on aircraft surface based on fringe projection[J]. Optik - International Journal for Light and Electron Optics,2020,280:164332.
[2] [2] Li X, Wang H, Yu W, et al. Laser paint stripping strategy in engineering application: A systematic review[J]. Optik,2021,241:167036.
[5] [5] Moira B, Capucine K. Successes and challenges in laser cleaning metal artefacts: A review[J]. Journal of Cultural Heritage,2022,53:100-117.
[8] [8] Li X K, Zhang Q H, Zhou X Z, et al. The influence of nanosecond laser pulse energy density for paint removal[J]. Optik,2018, 156:841-846.
[11] [11] Yang J, Zhou J, Sun Q, et al. Digital analysis and prediction of the topography after pulsed laser paint stripping[J]. Journal of Manufacturing Processes,2021,62:685-694.
[12] [12] Zhang Z Y, Zhang J Y, Wang Y B, et al. Removal of paint layer by layer using a 20 kHz 140 ns quasi-continuous wave laser[J]. Optik,2018,174:46-55.
[13] [13] Han J H, Cui X D, Wang S, et al. Laser effects based optimal laser parameter identifications for paint removal from metal substrate at 1064nm: a multi-pulse model[J]. Journal of Modern Optics,2017,13:1-13.
[16] [16] Lu Y, Yang L J, Wang M L, et al. Simulation of nanosecond laser cleaning the paint based on the thermal stress[J]. Optik,2020,227(3):165589.
[18] [18] Roberts D E. Pulsed laser coating removal by detachment and ejection[J]. Applied Physics A,2004,79(4):1067-1070.
[19] [19] Manoj K, Bhargava P, Biswas A K, et al. Epoxy-paint stripping using TEA CO2 laser: Determination of threshold fluence and the process parameters[J]. Optics & Laser Technology,2013,46:29-36.
[21] [21] Brygo F, Dutouquet C, Guern F L, et al. Laser fluence, repetition rate and pulse duration effects on paint ablation[J]. Applied Surface Science,2006,252(6):2131-2138.
[23] [23] Dausinger F, Hugel H, Konov V I. Micromachining with ultrashort laser pulses: from basic understanding to technical applications[J]. Proc. of SPIE,2003,5147:106-115.
[24] [24] Tian Z, Lei Z L, Chen X, et al. Nanosecond pulsed fiber laser cleaning of natural marine micro-biofoulings from the surface of aluminum alloy[J]. Journal of Cleaner Production,2020,244:118724.
[30] [30] Zhang D G, Xu J, Li Z C, et al. Removal mechanism of blue paint on aluminum alloy substrate during surface cleaning using nanosecond pulsed laser[J]. Optics and Laser Technology,2022,149:107882.
[31] [31] Coutouly J F, Deprez P, Breaban F, et al. Optimisation of a paint coating ablation process by TEA CO2 laser: Thermal field modelling and real-time monitoring of the process[J]. Journal of Materials Processing Technology,2009,209(17):5730-5735.
[39] [39] Zhu G, Wang S, Cheng W, et al. Corrosion and wear performance of aircraft skin after laser cleaning[J]. Optics & Laser Technology,2020,132(8):106475.
[41] [41] Schweizer G, Werner L. Industrial 2-kW TEA CO2 laser for paint stripping of aircraft[J]. Proceedings of SPIE - The International Society for Optical Engineering,1995,2502:57-63.
[42] [42] Schlett J. Laser paint removal takes off in aerospace[EB/OL].[2018-03-11]. https://www.photonics.com/a61353/Laser_Paint_Removal_Takes_Off_in_Aerospace.
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XU Jinjun, JIANG Mang, REN Yanxiu, GAO Kun, ZENG Quansheng. Research progress of laser paint stripping technology and its engineering application in aircraft skin paint removal[J]. Optical Technique, 2023, 49(1): 34
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Received: Apr. 28, 2022
Accepted: --
Published Online: Mar. 19, 2023
The Author Email: Quansheng ZENG (zqs_csgx@163.com)
CSTR:32186.14.