Progress of laser cleaning technology from the perspective of Chinese patents

Zhe LI, Wanqing ZHENG, Sijie WANG, Yingjie WANG, Yaokun PAN

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Front. Mech. Eng. ›› 2024, Vol. 19 ›› Issue (6) : 44. DOI: 10.1007/s11465-024-0815-1
REVIEW ARTICLE

Progress of laser cleaning technology from the perspective of Chinese patents

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Abstract

Laser cleaning technology has emerged as a rapidly developing high-tech surface engineering technology in recent years. It is considered the most promising green cleaning technology in the 21st century, and related patent applications exhibit an explosive growth trend. This study summarizes the overall trend of patent applications in laser cleaning in China, with a focus on systematically analyzing patents related to cleaning different substrates and coatings, cleaning equipment, and processes over the past 6 years. The main characteristics of the growth trend, institutional attributes, regional distribution, and type proportion of laser cleaning patent applications in China are clarified. The patent application characteristics of laser cleaning for different substrate materials and coatings are identified. The progress in research and development of laser cleaning equipment, cleaning terminals, and monitoring devices is outlined, while potential for maintaining substrate surface integrity and achieving surface functionalization through laser cleaning is explored. Areas for improvement in laser cleaning are determined to support the innovative development of laser cleaning technology.

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Keywords

laser cleaning / patent analysis / equipment development / trend analysis / surface functionalization

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Zhe LI, Wanqing ZHENG, Sijie WANG, Yingjie WANG, Yaokun PAN. Progress of laser cleaning technology from the perspective of Chinese patents. Front. Mech. Eng., 2024, 19(6): 44 https://doi.org/10.1007/s11465-024-0815-1

References

[1]
Zhu G D, Xu Z H, Jin Y, Chen X, Yang L J, Xu J, Shan D B, Chen Y B, Guo B. Mechanism and application of laser cleaning: a review. Optics and Lasers in Engineering, 2022, 157: 107130
CrossRef Google scholar
[2]
Nie J H, Zhang H, Zhang D H, Xu J, Zhang J Q, Shan D B, Guo B. Removal mechanism of laser cleaning for inorganic thermal control coatings on aluminum alloys. Applied Surface Science, 2023, 633: 157578
CrossRef Google scholar
[3]
Shi T Y, Wang C M, Mi G Y, Yan F. A study of microstructure and mechanical properties of aluminum alloy using laser cleaning. Journal of Manufacturing Processes, 2019, 42: 60–66
CrossRef Google scholar
[4]
Zhang F D, Liu H, Suebka C, Liu Y X, Liu Z, Guo W, Cheng Y M, Zhang S L, Li L. Corrosion behaviour of laser-cleaned AA7024 aluminium alloy. Applied Surface Science, 2018, 435: 452–461
CrossRef Google scholar
[5]
Wang W, Li X J, Liu W J, Xing F, Wang J, Zhang K. Experimental study on hydrophobic properties and corrosivity of laser cleaned 7075 aluminum alloy anodized film surface. Optics & Laser Technology, 2023, 166: 109615
CrossRef Google scholar
[6]
Maingi E M, Alonso M P, de la Fuente G F, Dubernet S, Lefrais Y, Chapoulie R, Vally E, Angurel L A. UV femtosecond laser cleaning of encrusted historical stained-glasses. Journal of Cultural Heritage, 2023, 61: 100–108
CrossRef Google scholar
[7]
Ye Y Y, Jia B S, Chen J, Jiang Y L, Tang H P, Wang H J, Luan X Y, Liao W, Zhang C C, Yao C Z. Laser cleaning of the contaminations on the surface of tire mould. International Journal of Modern Physics B, 2017, 31(16–19): 1744100
CrossRef Google scholar
[8]
ZhuG D, Zhang D H, ZhangL, XuJ, ShanD B, GuoB. Environmentally friendly photothermal reconstruction of cement/asphalt road: can road markings also be cleaned in such unexpected ways? Journal of Cleaner Production, 2024, 434: 140347
[9]
Zhu G D, Wang S R, Cheng W, Ren Y, Wen D S. Corrosion and wear performance of aircraft skin after laser cleaning. Optics & Laser Technology, 2020, 132: 106475
CrossRef Google scholar
[10]
Liu Y, Liu W J, Zhang D, Tian Z Q, Sun X W, Wei Z. Experimental investigations into cleaning mechanism of ship shell plant surface involved in dry laser cleaning by controlling laser power. Applied Physics A, 2020, 126(11): 866
CrossRef Google scholar
[11]
Zhou Z H, Sun W P, Wu J J, Chen H W, Zhang F, Wang S X. The fundamental mechanisms of laser cleaning technology and its typical applications in industry. Processes, 2023, 11(5): 1445
CrossRef Google scholar
[12]
Zhang D H, Xu J, Li Z C, Jin Y, Su X, Shan D B, Guo B. Removal mechanisms of nanosecond pulsed laser cleaning of blue and red polyurethane paint. Applied Physics A, 2022, 128(2): 170
CrossRef Google scholar
[13]
LiY, WuZ, ChuD, YangH, DengG, Zhou S. Research progress of laser cleaning and monitoring technology. Infrared and Laser Engineering, 2023, 52(2): 20220784 (in Chinese)
[14]
Zhu G, Zhang D, Li Z, Su X, Jin Y, Xu J, Shan D, Guo B. Research progress and challenges of laser cleaning technology. Chinese Journal of Lasers, 2024, 51(04): 97–120
[15]
Ouyang J, Mativenga P, Goffin N, Liu W, Liu Z, Mirhosseini N, Jones L, Woolley E, Li L. Energy consumption and performance optimisation of laser cleaning for coating removal. CIRP Journal of Manufacturing Science and Technology, 2022, 37: 245–257
CrossRef Google scholar
[16]
Hou L P, Yin F S, Wang S J, Sun J Z, Yin H F. A review of thermal effects and substrate damage control in laser cleaning. Optics & Laser Technology, 2024, 174: 110613
CrossRef Google scholar
[17]
Cauldron Co., Ltd. Chinese patent, CN1125917A; HK1013270A, 1994
[18]
University of Missouri. Chinese patent, CN1317155A, 1999
[19]
The Institute of Engineering Thermophysics of the Chinese Academy of Sciences. Chinese patent, CN2783534Y, 2004
[20]
Tsinghua University. Chinese patent, CN101219430A, 2008
[21]
Laser Fusion Research Center of China Academy of Engineering Physics. Chinese patent, CN102327885A, 2010
[22]
Jiangsu University. Chinese patent, CN103063167A, 2012
[23]
Jiangsu University. Chinese patent, CN103090969A, 2012
[24]
Jiangsu University. Chinese patent, CN103100537A, 2012
[25]
Henan Sancheng Mechanical and Electrical Equipment Co., Ltd., China Railway Design Group, Feitai Communications Technology Co., Ltd. Chinese patent, CN216338780U, 2021
[26]
Harbin Wick Rail Transit Technology Development Co., Ltd. Chinese patent, CN217775034U, 2022
[27]
Hebei University of Technology. Chinese patent, CN110899253A, 2019
[28]
Shenyang University of Technology. Chinese patent, CN113910507A, 2021
[29]
Hangzhou Innovation Research Institute of Beihang University. Chinese patent, CN116689408A, 2023
[30]
Hubei Zhengxin Pipe Fitting Co., Ltd. Chinese patent, CN218110180U, 2022
[31]
Xinxing Cast Pipe Co., Ltd. Chinese patent, CN207272437U, 2017
[32]
Sichuan University. Chinese patent, CN106001928A, 2016
[33]
Wuhan WISCO Huagong Laser Large Equipment Co., Ltd. Chinese patent, CN210676213U, 2019
[34]
Armored Force Academy of the Chinese People’s Liberation Army. Chinese patent, CN110508563A, 2019
[35]
Dongguan Ruiyong Hardware Products Co., Ltd. Chinese patent, CN210936254U, 2019
[36]
Hunan Vocational College of Railway Technology. Chinese patent, CN116727367A, 2023
[37]
CRRC Nanjing Puzhen Co., Ltd. Chinese patent, CN110434124A, 2019
[38]
Laser Institute of Shandong Academy of Sciences. Chinese patent, CN112548477A, 2020
[39]
Wuhan Xiangming Laser Technology Co., Ltd. Chinese patent, CN211305212U, 2019
[40]
Wuhan Xiangming Laser Technology Co., Ltd. Chinese patent, CN110976438A, 2019
[41]
Laser Institute of Shandong Academy of Sciences. Chinese patent, CN111496430A, 2020
[42]
CRRC Nanjing Puzhen Co., Ltd. Chinese patent, CN110434502A, 2019
[43]
China Aviation Manufacturing Technology Research Institute. Chinese patent, CN115055447A, 2022
[44]
Shenyang Heshitai Tongyong Titanium Industry Co., Ltd. Chinese patent, CN214348352U, 2020
[45]
China Aviation Manufacturing Technology Research Institute. Chinese patent, CN115178883A, 2022
[46]
Chengdu Aircraft Industry (Group) Co., Ltd, Wuhan Xiangming Laser Technology Co., Ltd. Chinese patent, CN112371653A, 2020
[47]
Chengdu Mairuijie Laser Technology Co., Ltd. Chinese patent, CN214441505U, 2021
[48]
Wuhan Tianyu Intelligent Manufacturing Co., Ltd. Chinese patent, CN211028501U, 2019
[49]
Beijing Xinghang Electromechanical Equipment Co., Ltd. Chinese patent, CN110385517A, 2019
[50]
Hunan Xinao Photoelectric Technology Co., Ltd. Chinese patent, CN108787636A, 2018
[51]
Minglei Laser Intelligent Equipment (Heyuan) Co., Ltd. Chinese patent, CN216225902U, 2021
[52]
Nanchang Hangkong University. Chinese patent, CN110016807A, 2019
[53]
Jiangsu University. Chinese patent, CN110586579A, 2019
[54]
Nanjing University of Aeronautics and Astronautics. Chinese patent, CN114985939A, 2022
[55]
Jiangsu University. Chinese patent, CN112090866A, 2020
[56]
Shenyang Institute of Automation Chinese Academy of Sciences. Chinese patent, CN112380677A, 2020
[57]
Song Y H, Zhang T F, Fan W J, Zhang Y, Yang W F, Wang A D. Effect of the overlap ratio on surface properties of 7B04 aluminum alloy for aviation during laser derusting. Journal of Materials Research and Technology, 2022, 20: 1495–1511
CrossRef Google scholar
[58]
Wang Z M, Zeng X Y, Huang W L. Parameters and surface performance of laser removal of rust layer on A3 steel. Surface and Coatings Technology, 2003, 166(1): 10–16
CrossRef Google scholar
[59]
He Y H, Cai X, Ye J F. Research on pulse laser cleaning and rust removal technology in power systems. AIP Advances, 2023, 13(9): 095101
CrossRef Google scholar
[60]
Sun Q, Zhou J Z, Meng X K, Li P F. Mechanical properties and microstructure characteristics of 2024–T351 aluminum alloy specimen subjected to paint removal by laser cleaning. Vacuum, 2023, 211: 111927
CrossRef Google scholar
[61]
Nankai University. Chinese patent, CN101143364A, 2007
[62]
Jiangsu University. Chinese patent, CN109226102A, 2018
[63]
Baoyu (Wuhan) Laser Technology Co., Ltd. Chinese patent, CN116651863A, 2023
[64]
Qingdao Campus of Naval Aeronautical University. Chinese patent, CN115837380A, 2022
[65]
Dongguan Eontec Co., Ltd, Dongguan Yihao Metal Material Technology Co., Ltd, Zhuzhou Yi An Xin Material R&D Co., Ltd. Chinese patent, CN111185441A, 2021
[66]
Shenhua Group Zhungeer Energy Sources Co., Ltd. Chinese patent, CN117000695A, 2023
[67]
Wang X, Li J F, Wang L M, Jia X J, Hong M H, Ren Y, Ma M L. A novel de-rusting method with molten salt precleaning and laser cleaning for the recycling of steel parts. Clean Technologies and Environmental Policy, 2021, 23(5): 1403–1414
CrossRef Google scholar
[68]
Sun Q, Zhou J Z, Meng X K, Yang J N, Guo Z H, Zhu M, Guo S. Mechanism and threshold fluence of nanosecond pulsed laser paint removal. Rare Metals, 2022, 41(3): 1022–1031
CrossRef Google scholar
[69]
Minglei Laser Intelligent Equipment (Heyuan) Co., Ltd. Chinese patent, CN112827947A, 2021
[70]
Sichuan University. Chinese patent, CN113070287A, 2021
[71]
Shanghai Ruirong Laser Welding Technology Co., Ltd, China Hi-Tech Technology Co., Ltd. Chinese patent, CN212121073U, 2020
[72]
Durr Coating System Engineering (Shanghai) Co., Ltd. Chinese patent, CN212494343U, 2020
[73]
China Hi-Tech Technology Co., Ltd. Chinese patent, CN213384777U, 2020
[74]
Sichuan Minghang Lander Technology Co., Ltd. Chinese patent, CN217571320U, 2022
[75]
Hebei University of Technology. Chinese patent, CN114713570A, 2022
[76]
Nanchang Hangkong University. Chinese patent, CN116060384A, 2023
[77]
Hebei Hanguang Heavy Industry Co., Ltd. Chinese patent, CN113695315A, 2021
[78]
Harbin Wick Rail Transit Technology Development Co., Ltd. Chinese patent, CN218610797U, 2022
[79]
Yingtan Zhihui Internet of Things Application Research Institute Co., Ltd. Chinese patent, CN112404043A, 2020
[80]
Shandong Zhongshi Yitong Group Co., Ltd. Chinese patent, CN113042463A, 2021
[81]
Jiangsu University. Chinese patent, CN114054272A, 2021
[82]
Suzhou Jinghai Laser Intelligent Technology Co., Ltd. Chinese patent, CN217513073U, 2022
[83]
Hunan Xinao Photoelectric Technology Co., Ltd. Chinese patent, CN217748471U, 2022
[84]
State-owned Wuhu Machinery Factory. Chinese patent, CN113042463A, 2023
[85]
Laser Institute of Shandong Academy of Sciences. Chinese patent, CN111167804A, 2020
[86]
Wuhan Jindun Laser Technology Co., Ltd. Chinese patent, CN111940423A, 2020
[87]
Zhejiang University of Technology. Chinese patent, CN112410847A, 2020
[88]
Nanchang Hangkong University. Chinese patent, CN115945465A, 2023
[89]
Tianjin University. Chinese patent, CN116984314A, 2023
[90]
Laser Fusion Research Center of China Academy of Engineering Physics. Chinese patent, CN109821820A, 2019
[91]
Shandong CharmRay Laser Technology Co., Ltd. Chinese patent, CN115742312A, 2022
[92]
SOL Electronic Technology Co., Ltd. Chinese patent, CN115430665A, 2022
[93]
Dongguan Feichuang Laser Intelligent Equipment Co., Ltd. Chinese patent, CN115950907A, 2023
[94]
Xi’an Lanxiang New Materials Technology Co., Ltd. Chinese patent, CN213194883U, 2020
[95]
Armored Force Academy of the Chinese People’s Liberation Army. Chinese patent, CN116899981A, 2023
[96]
Shengtong Intelligent Machinery Equipment (Shanghai) Co., Ltd. Chinese patent, CN115283365A, 2022
[97]
Beijing University of Technology. Chinese patent, CN115889340A, 2022
[98]
Wuhan Xiangming Laser Technology Co., Ltd. Chinese patent, CN116551120A, 2023
[99]
Beijing University of Technology, Institute of Laser Research (Shandong Academy of Sciences), Shandong Chan Yan Qiang Yuan Laser Technology Co., Ltd. Chinese patent, CN116727862A, 2023
[100]
National University of Defense Technology. Chinese patent, CN110523715A, 2019
[101]
Konfoong Materials International Co., Ltd. Chinese patent, CN104588810A, 2013
[102]
Aifaco Electronic Materials (Suzhou) Co., Ltd. Chinese patent, CN112475505A, 2020
[103]
Shanghai Chip Electronic Technology Co., Ltd. Chinese patent, CN219683471U, 2023
[104]
Borunte Robot Co., Ltd. Chinese patent, CN116586771A, 2023
[105]
Sichuan Aerospace Changzheng Equipment Manufacturing Co., Ltd. Chinese patent, CN112453710A, 2020
[106]
Dongfang Electric Group Dongfang Steam Turbine Co., Ltd. Chinese patent, CN114289832A, 2021
[107]
Huazhong University of Science and Technology. Chinese patent, CN113070572A, 2021
[108]
Shenyang University of Technology. Chinese patent, CN116673272A, 2023
[109]
Shenzhen Hydrolaser Technology Limited. Chinese patent, CN215543383U, 2021
[110]
Baoyu (Wuhan) Laser Technology Co., Ltd. Chinese patent, CN218873124U, 2022
[111]
Jiangsu Guoyuan Laser Intelligent Equipment Manufacturing Co., Ltd. Chinese patent, CN115889343A, 2022
[112]
Nanjing University of Aeronautics and Astronautics. Chinese patent, CN116651856A, 2023
[113]
Baoyu (Wuhan) Laser Technology Co., Ltd. Chinese patent, CN219758591U, 2023
[114]
Wuxiang County Hong Chen Wan Ju Environmental Protection Technology Co., Ltd. Chinese patent, CN118003443A, 2024
[115]
China Energy Longyuan Environmental Protection Co., Ltd. Chinese patent. CN117505407A, 2024
[116]
South China University of Technology. Chinese patent, CN117888101A, 2023
[117]
Shanghai Yingfeng Electronic Technology Co., Ltd. Chinese patent, CN117583741A, 2023
[118]
Kunming Sachuang Photoelectricity Technology Co., Ltd. Chinese patent, CN116689405A, 2023
[119]
China Yangtze Power Co., Ltd. Chinese patent, CN116765613A, 2023
[120]
China Construction Third Division First Construction Engineering Co., Ltd. Chinese patent, CN116441244A, 2023
[121]
Fanachi Laser Technology (Shandong) Co., Ltd. Chinese patent, CN219169124U, 2023
[122]
China Aviation Xi’an Aircraft Industry Group Co., Ltd. Chinese patent, CN115889341A, 2022
[123]
Suzhou Xiangming Laser Technology Co., Ltd. Chinese patent, CN219899450U, 2023
[124]
Shandong Zotye Construction Technology Co., Ltd. Chinese patent, CN216679378U, 2022
[125]
Guangdong Longyue Construction Engineering Co., Ltd. Chinese patent, CN218574494U, 2022
[126]
LiuJ. Research on intelligent laser derusting system based on machine vision. Thesis for the Master’s Degree. Suzhou: Suzhou University, 2020
[127]
Wang W J, Sun L X, Lu Y, Qi L F, Wang W, Qiao H C. Laser induced breakdown spectroscopy online monitoring of laser cleaning quality on carbon fiber reinforced plastic. Optics & Laser Technology, 2022, 145: 107481
CrossRef Google scholar
[128]
Hebei University of Science and Technology, Institute of Remanufacturing Industry Technology, Shanghai Xinfumei Gearbox Technology Service Co., Ltd. Chinese patent, CN115979588A, 2023
[129]
Dongguan Feichuang Laser Intelligent Equipment Co. Ltd. Chinese patent, CN115945462A, 2022
[130]
Nanjing University of Aeronautics and Astronautics. Chinese patent, CN116441247A, 2023
[131]
CRRC Nanjing Puzhen Co., Ltd. Chinese patent, CN111951257A, 2020
[132]
Li X, Guan Y C. Real-time monitoring of laser cleaning for hot-rolled stainless steel by laser-induced breakdown spectroscopy. Metals, 2021, 11(5): 790
CrossRef Google scholar
[133]
Civil Aviation Flight University of China. Chinese patent, CN114367498A, 2021
[134]
Dongguan Feichuang Laser Intelligent Equipment Co., Ltd. Chinese patent, CN116183583A, 2022
[135]
Civil Aviation Flight University of China. Chinese patent, CN115839944A, 2023
[136]
Beijing University of Technology, Institute of Semiconductors (Chinese Academy of Sciences). Chinese patent, CN116371825A, 2023
[137]
Shanghai Hangyi High-Tech Development Research Institute Co., Ltd. Chinese patent, CN114119535A, 2021
[138]
China Aviation Manufacturing Technology Research Institute. Chinese patent, CN115532737A, 2022
[139]
Armored Force Academy of the Chinese People’s Liberation Army. Chinese patent, CN112044872A, 2020
[140]
Qilu University of Technology (Shandong Academy of Sciences). Chinese patent, CN116644525A, 2023
[141]
Harbin Institute of Technology. Chinese patent, CN110586580A, 2019
[142]
Nankai University. Chinese patent, CN112605067A, 2020
[143]
Jiangsu University. Chinese patent, CN112077053A, 2020
[144]
Changzhou Campus Of Hohai University. Chinese patent, CN111672832A, 2020
[145]
China Aviation Manufacturing Technology Research Institute. Chinese patent, CN116162937A, 2023
[146]
Shenzhen Institute of Information Technology. Chinese patent, CN112317458A, 2020
[147]
Shenyang Institute of Automation (Chinese Academy of Sciences). Chinese patent, CN114505297A, 2020
[148]
Harbin Institute of Technology. Chinese patent, CN109967881A, 2019
[149]
Suzhou Xingbo Laser Technology Co., Ltd. Chinese patent, CN113059324A, 2021
[150]
Armored Force Academy of the Chinese People’s Liberation Army. Chinese patent, CN111979557A, 2020
[151]
Taiyuan University of Science and Technology. Chinese patent, CN115026402A, 2022
[152]
Taiyuan University of Science and Technology. Chinese patent, CN115026129A, 2022
[153]
Shan T, Wang S J, Yin F S, Qiao Y L, Liu P F. Typical applications of laser cleaning and effects on matrix surface integrity. Materials Reports, 2021, 35(11): 11163–11172
CrossRef Google scholar
[154]
Chu W, Zeng B, Li Z T, Yao J P, Xie H Q, Li G H, Wang Z S, Cheng Y. Range extension in laser-induced breakdown spectroscopy using femtosecond–nanosecond dual-beam laser system. Applied Physics B, 2017, 123(6): 173
CrossRef Google scholar
[155]
Xiamen University of Technology. Chinese patent, CN116511167A, 2023
[156]
Jiangsu University. Chinese patent, CN114653686A, 2022
[157]
Wuhan Raycus Fiber Laser Technologies Co., Ltd. Chinese patent, CN209680715U, 2019
[158]
China Aviation Manufacturing Technology Research Institute. Chinese patent, CN115958020A, 2023
[159]
China Aviation Manufacturing Technology Research Institute. Chinese patent, CN115395358A, 2022
[160]
Beijing University of Technology. Chinese patent, CN116571512A, 2023
[161]
Henan Museum, Suzhou Usiland Optronics Co., Ltd. Chinese patent, CN213367026U, 2020
[162]
Wenzhou Polytechnic. Chinese patent, CN107297365A, 2017

Acknowledgements

This work was financed by the National Natural Science Foundation of China (Grant No. 52275226), the Natural Science Foundation of Beijing Municipality, China (Grant No. 3222022), the Innovation Capability Enhancement Project for Technological Small and Medium-sized Enterprises of Shandong Province, China (Grant No. 2023TSGC0949), and the Natural Science Foundation of Shandong Province, China (Grant No. ZR2020QE022).

Conflict of Interest

The authors declare no conflict of interest.

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