A review on laser drilling optimization technique: parameters, methods, and physical-field assistance

被引:0
作者
Tao Wei
Shufeng Sun
Fengyun Zhang
Xi Wang
Pingping Wang
Xunhuan Liu
Qinyang Wang
机构
[1] Qingdao University of Technology,Shandong Collaborative Innovation Center of Laser Green Intelligent Manufacturing Technology and Equipment
[2] Key Lab of Industrial Fluid Energy Conservation and Pollution Control (Qingdao University of Technology),School of Mechanical and Automotive Engineering
[3] Ministry of Education,undefined
[4] Qingdao University of Technology,undefined
来源
The International Journal of Advanced Manufacturing Technology | 2024年 / 131卷
关键词
Laser drilling,; Micro-hole quality optimization,; Physical field assistance,; Melt dynamics;
D O I
暂无
中图分类号
学科分类号
摘要
Laser processing has emerged as a pivotal technique for micro-hole fabrication owing to its exceptional efficiency and absence of tool wear. Nevertheless, certain imperfections persist in laser drilling. Consequently, this study presents a comprehensive analysis of the impact of laser processing parameters, methods, and physical field-assisted techniques on the quality and efficiency of laser drilling based on the characteristics desired for micro-holes. The findings reveal that selecting an appropriate laser wavelength and pulse width, coupled with meticulous adjustments to laser power, repetition frequency, and defocusing amount can enhance either processing efficiency or micro-holes quality; however, optimizing both aspects simultaneously remains challenging. By refining scanning strategies and implementing pulsed joint secondary repair approaches, heat accumulation is minimized while micro-holes quality is optimized; nevertheless, ensuring high processing efficiency poses difficulties. Ultrasonic assisted laser drilling enhances processing efficiency by facilitating the expulsion of molten materials, while magnetic field-assisted laser drilling improves processing efficiency by mitigating the attenuation of the laser caused by plasma clouds. Both techniques contribute to enhancing the quality of hole walls through their stirring effect. Water-based ultrasonic/magnetic field-assisted laser perforation combines heat dissipation and secondary flushing effects with ultrasonic/magnetic field assistance, resulting in superior micro-hole formation. Magnetic field-ultrasonic assisted laser perforation synergistically combines both effects. Furthermore, this study distinguishes between the promoting and inhibiting effects of rotating and static magnetic fields on molten metal flow, elucidating the impact of ultrasound and magnetic fields on molten metal from a melt dynamics perspective. Finally, we summarize the influence of each optimization method on micro-hole quality characteristics and processing efficiency while providing insights into future development trends.
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收藏
页码:5691 / 5710
页数:19
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  • [1] Zhao W(2018)Self-cleaning effect in high quality percussion ablating of cooling hole by picosecond ultra-short pulse laser Opt Lasers Eng 105 125-131
  • [2] Yu Z(2021)Feasibility of micro-hole machining in fiber laser trepan drilling of 2.5D Cf/SiC composite: Experimental investigation and optimization Optik 242 167186-417
  • [3] Liu C(2020)Research on ultrasonic-assisted drilling in micro-hole machining of the DD6 superalloy Adv Manuf 8 405-6913
  • [4] Zhang X(2019)A novel electrochemical sensor based on microporous polymeric nanospheres for measuring peroxynitrite anion released by living cells and studying the synergistic effect of antioxidants Analyst 144 6905-437
  • [5] Gao L(2020)Fabrication and characterization of Spinacia oleracea extract incorporated alginate/carboxymethyl cellulose microporous scaffold for bone tissue engineering Int J Biol Macromol 156 430-80
  • [6] Jiang X(2021)Microwave synthesis of zeolites and their related applications Microporous Mesoporous Mater 323 73-13
  • [7] Li C(2020)Effect of Machining Parameters on Hole Accuracy and Burr Formation in Micro-Drilling of Brass Defect Diffus Forum 402 1-2665
  • [8] Yang T(2022)Research on water jet-guided laser micro-hole machining of 6061 aluminum alloy Int J Adv Manuf Technol 118 2653-79
  • [9] Zhu X-X(2020)Micro-electrode wear and compensation to ensure the dimensional consistency accuracy of micro-hole array in micro-EDM drilling Int J Adv Manuf Technol 111 70-24593
  • [10] Wang W-H(2020)Coaxial waterjet-assisted laser drilling of film cooling holes in turbine blades Int J Mach Tools Manuf 150 24578-327