Optimization of pulsed laser based metal cleaning process

被引:0
|
作者
Cioboata D.D. [1 ]
Selagea M. [2 ]
Savencu S. [2 ]
Udrea R.M. [2 ]
Udrea M.V. [2 ]
Stanciu D.I. [1 ]
Popescu V.Ș. [1 ]
机构
[1] National Institute of Research and Development for Mechatronics and Measurement Technique – INCDMTM, Bucharest
[2] Apel Laser srl, Str. Vanatorilor nr.25, Mogosoaia
来源
International Journal of Mechatronics and Applied Mechanics | 2021年 / 1卷 / 09期
关键词
Laser Cleaning; Laser Material Processing; Laser Parameters; Metal Cleaning; Pulsed Laser;
D O I
10.17683/IJOMAM/ISSUE9.10
中图分类号
学科分类号
摘要
– The cleaning of metallic surfaces offers the possibility to reuse old components or to prepare components for processes such as painting, thermal treatment, etc. There are three main methods to clean metallic surfaces: chemical, mechanical and by using laser beam. The chemical method is expensive, time consuming and polluting, the mechanical one has similar disadvantages, hence laser cleaning is the most efficient of them and it is increasingly more used in industrial applications. In our work we use a 100 W fiber laser based device that includes the laser itself, an expander, a scanner and a variable focus device. The influence of the laser parameters (power, pulse repetition rate, fluence) on the quality of the surface (conductivity and adherence) has been studied and optimized. A possibility to decrease the required laser power in specific cases is envisaged. Cleaning of 3D surfaces is considered. © 2021, Cefin Publishing House. All rights reserved.
引用
收藏
页码:71 / 75
页数:4
相关论文
共 50 条
  • [31] Evaluation of a dry laser cleaning process
    Vereecke, G
    Rohr, E
    Heyns, MM
    INSTITUTE OF ENVIRONMENTAL SCIENCES AND TECHNOLOGY, 1998 PROCEEDINGS - CONTAMINATION CONTROL, 1998, : 202 - 209
  • [32] Wavelength effects in the laser cleaning process
    Lu, Yong-Feng
    Song, Wen-Dong
    Tee, Chong-Kiat
    Chan, Daniel Siu-Hung
    Low, Teck-Seng
    Japanese Journal of Applied Physics, Part 1: Regular Papers & Short Notes & Review Papers, 1998, 37 (3 A): : 840 - 844
  • [33] Pulsed laser cleaning of resin-based surface coating on the titanium alloy substrate
    Wen, Jianzhong
    Li, Yuqin
    Fan, Jinyu
    Wei, Xiaolong
    AIP ADVANCES, 2021, 11 (11)
  • [34] Optimization of the influencing factor of membrane cleaning process based on the NaOCl diffusion
    Qi, Kang-Quan
    Wang, Xue-Ye
    Cai, Ke-Yu
    Wang, Zhi-Wei
    Zhongguo Huanjing Kexue/China Environmental Science, 2020, 40 (08): : 3408 - 3416
  • [35] Optimization of Laser Cleaning Process Parameters for Petroleum Pipe Threads Based on Response Surface Method and Particle Swarm Algorithm
    Sun Xingwei
    Zhang Zhong
    Yang Heran
    Dong Zhixu
    Liu Yin
    CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2022, 49 (22):
  • [36] Optimization of laser cleaning process parameters for Q345C steel rust layer based on response surface
    Zhu, Ming
    Zhou, Jian-Zhong
    Meng, Xian-Kai
    Sun, Qi
    Gao, Liao-Yuan
    Li, Hua-Ting
    Guo, Zhao-Heng
    Yang, Jia-Nian
    Fu, Qiang
    Surface Technology, 2019, 48 (11): : 381 - 391
  • [37] Investigation of airborne nanoparticles emitted during the laser cleaning process of corroded metal surface
    Park, Hyoungwon
    Park, Changkyoo
    ENVIRONMENTAL RESEARCH, 2024, 248
  • [38] Constraints and optimization of the laser microwelding process of thin metal foils
    Patschger, Andreas
    Bliedtner, Jens
    JOURNAL OF LASER APPLICATIONS, 2017, 29 (02)
  • [39] Direct metal imprinting lithography based on pulsed laser heating
    Lee, Yung-Chun
    Chen, Chun-Hung
    TRANSDUCERS '07 & EUROSENSORS XXI, DIGEST OF TECHNICAL PAPERS, VOLS 1 AND 2, 2007,
  • [40] Sensors based on pulsed laser deposition of multilayers of metal oxides
    Marotta, V
    Orlando, S
    Parisi, GP
    Giardini, A
    APPLIED SURFACE SCIENCE, 2000, 154 : 640 - 646