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Laser EDM Hybrid Micro Machining of CFRP

Journal of the Korean Society for Precision Engineering 2023;40(2):99-104.
Published online: February 1, 2023

1 동양미래대학교 로봇자동화공학부

1 School of Robot and Automation Engineering, Dongyang Mirae University

#E-mail: dkchung@dongyang.ac.kr, TEL: +82-2-2610-5186
• Received: September 30, 2022   • Revised: November 7, 2022   • Accepted: December 2, 2022

Copyright © The Korean Society for Precision Engineering

This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

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Citations

Citations to this article as recorded by  Crossref logo
  • Fabrication of micro holes with confined pitting corrosion by laser and electrochemical machining: Pitting corrosion formation mechanisms and protection method
    Jian Yang, Yufeng Wang, Yong Yang, Yunfeng Liu, Wenwu Zhang
    Journal of Materials Processing Technology.2025; 335: 118677.     CrossRef
  • Laser Drilling of Micro-Hole Array on CFRP Using Nanosecond Pulsed Fiber Laser
    Do Kwan Chung
    Journal of the Korean Society of Manufacturing Process Engineers.2024; 23(5): 92.     CrossRef

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Laser EDM Hybrid Micro Machining of CFRP
J. Korean Soc. Precis. Eng.. 2023;40(2):99-104.   Published online February 1, 2023
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J. Korean Soc. Precis. Eng.. 2023;40(2):99-104.   Published online February 1, 2023
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Laser EDM Hybrid Micro Machining of CFRP
Image Image Image Image Image Image Image Image Image Image Image
Fig. 1 Square shape machining on CFRP using hybrid machining for feasibility test: after laser pre-processing (a) Front view, (b) Backside view; after EDM post-processing (c) Front view, and (d) Backside view
Fig. 2 Laser machining results with different conditions: (a) 50% power and 10 repetitions, (b) 30% power and 5 repetitions, (c) 30% power and 5 repetitions (square shape)
Fig. 3 Machined holes by laser EDM hybrid process with different EDM conditions: 120 V, 10 nF (a) Front view, (b) Backside view; 90 V, 10 nF (c) Front view, (d) Backside view
Fig. 4 Thermal damage area ratio according to voltage in EDM post-processing (capacitor: 10 nF, tool size: 233 μm)
Fig. 5 Thermal damage area ratio according to capacitance in EDM post-processing (voltage: 100 V, tool size: 215 μm)
Fig. 6 Machining time and side gap according to voltage in EDM porst-processing (capacitance: 10 nF, tool size: 233 μm)
Fig. 7 Micro holes with a diameter of 150 μm by using hybrid machining: (a) After laser pre-processing (30% power, 5 repetitions); after EDM post-processing (100 V, 5 nF, too size 125 μm) (b) Front view, (c) Backside view
Fig. 8 A square shape by hybrid machining with laser pre-processing (30% power and 5 repetitions) and EDM post-processing (100 V and 10 nF): (a) Front view, (b) Backside view
Fig. 9 Fabrication procedure of multi-tool (outer four sides machining: steps 1 to 4, cross shape machining: steps 5 to 6)
Fig. 10 Multi-tool (after being used for CFRP multi-processing)
Fig. 11 Multi-processing of 4 square shapes with multi-tool by hybrid machining: (a) After laser-pre-processing (80% power, 200 repetitions); after EDM post-processing (125 V, 47 nF) (b) Front view, (c) Backside view
Laser EDM Hybrid Micro Machining of CFRP