Laser & Optoelectronics Progress, Volume. 60, Issue 23, 2314002(2023)
Effect of Continuous Laser Cleaning Process Parameters on Surface Quality of Q235B Carbon Steel Rust Layer
[1] Guo S C, Si R Z, Dai Q L et al. A critical review of corrosion development and rust removal techniques on the structural/environmental performance of corroded steel bridges[J]. Journal of Cleaner Production, 233, 126-146(2019).
[2] Cheng Y J, He F D, Song X N et al. Cause analysis on the evaporator corrosion of waste heat boiler and chemical cleaning[J]. Industrial Water Treatment, 38, 102-105(2018).
[3] Zhang G X, Hua X M, Huang Y et al. Investigation on mechanism of oxide removal and plasma behavior during laser cleaning on aluminum alloy[J]. Applied Surface Science, 506, 144666(2020).
[4] Wang K J. Study on pulsed laser derusting process of Q235 carbon steel[D](2017).
[5] Liao D S, Wang Q, Wang F S et al. Effect of nanosecond pulsed laser cleaning scanning speed on surface oxide film cleaning quality of TC4 titanium alloy[J]. Chinese Journal of Lasers, 50, 0402020(2023).
[6] Li X Y, Li C Y, Wang D et al. Effect of laser scanning speeds on cleaning quality of rusted layer on Q345 steel surface[J]. Chinese Journal of Lasers, 47, 1002010(2020).
[7] Guo L Y, Li Y Q, Geng S N et al. Numerical and experimental analysis for morphology evolution of 6061 aluminum alloy during nanosecond pulsed laser cleaning[J]. Surface and Coatings Technology, 432, 128056(2022).
[8] Sun Q, Zhou J Z, Meng X K et al. Mechanism and threshold fluence of nanosecond pulsed laser paint removal[J]. Rare Metals, 41, 1022-1031(2022).
[9] Wei B X, Xu J, Gao L Q et al. Nanosecond pulsed laser-assisted modified copper surface structure: enhanced surface microhardness and microbial corrosion resistance[J]. Journal of Materials Science & Technology, 107, 111-123(2022).
[10] Fujita K, Inagaki H, Toyosawa K et al. kW-class laser cleaning for steel structure maintenance and decontamination[J]. Journal of the Atomic Energy Society of Japan, 62, 259-262(2020).
[11] Zhuang S S, Kainuma S, Yang M Y et al. Investigation on the peak temperature and surface defects on the carbon steel treated by rotating CW laser[J]. Optics & Laser Technology, 135, 106727(2021).
[12] Zhuang S S, Kainuma S, Yang M Y et al. Characterizing corrosion properties of carbon steel affected by high-power laser cleaning[J]. Construction and Building Materials, 274, 122085(2021).
[13] Anthony T R, Cline H E. Surface rippling induced by surface-tension gradients during laser surface melting and alloying[J]. Journal of Applied Physics, 48, 3888-3894(1977).
[14] Kim W S, Sim B C. Study of thermal behavior and fluid flow during laser surface heating of alloys[J]. Numerical Heat Transfer, Part A: Applications, 31, 703-723(1997).
[15] Sim B C, Kim W S. Melting and dynamic-surface deformation in laser surface heating[J]. International Journal of Heat and Mass Transfer, 48, 1137-1144(2005).
[16] Wang Q D, Kainuma S, Zhuang S S et al. Laser cleaning on severely corroded steel members: engineering attempt and cleanliness assessment[J]. Journal of Cleaner Production, 376, 134224(2022).
[17] Duprat F, Larrard T, Vu N T. Quantification of Tafel coefficients according to passive/active state of steel carbonation-induced corrosion in concrete[J]. Materials and Corrosion, 70, 1934-1963(2019).
[18] Evans S, Koehler E L. Use of polarization methods in the determination of the rate of corrosion of aluminum alloys in anaerobic media[J]. Journal of the Electrochemical Society, 108, 509(1961).
[19] Guo L, Gao Y, Cheng Y X et al. Microstructure design of the laser glazed layer on thermal barrier coatings and its effect on the CMAS corrosion[J]. Corrosion Science, 192, 109847(2021).
[20] Sun B L. Electrochemical corrosion characteristics of low-carbon alloy steel in NaCl solution[D](2013).
[21] Liao C H, Zhou J, Shen H. Electrochemical corrosion behaviors before and after laser polishing of additive manufactured TC4 titanium alloy[J]. Chinese Journal of Lasers, 47, 0102003(2020).
[22] Zha R W. Study on mechanism and process of cleaning rust layer with nanosecond pulse laser[D](2021).
[23] Xiao M, Gao C K, Tan C W et al. Experimental and numerical assessment of interfacial microstructure evolution in dissimilar Al/steel joint by diode laser welding-brazing[J]. Optik, 245, 167706(2021).
[24] Lu J[M]. Physics of laser interaction with materials, 48-48(1996).
[25] Wang H, Man S J, Liu L S et al. Mechanism of derusting by laser-diode pumped acousto-optic Q-switch Nd∶YAG laser[J]. Cleaning World, 34, 37-41(2018).
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Qiupei Wu, Xiangyang Sun, Jiapo Sun, Lianghua Han, Lie Liu. Effect of Continuous Laser Cleaning Process Parameters on Surface Quality of Q235B Carbon Steel Rust Layer[J]. Laser & Optoelectronics Progress, 2023, 60(23): 2314002
Category: Lasers and Laser Optics
Received: Oct. 31, 2022
Accepted: Dec. 27, 2022
Published Online: Dec. 8, 2023
The Author Email: Lie Liu (Reseek206@163.com)