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"전해방전"

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"전해방전"

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Cutting of Chemically Strengthened Glass Using the Combination of Electrochemical Discharge and Grinding Processes
Jonghwan Kim, Jihong Hwang
J. Korean Soc. Precis. Eng. 2024;41(12):957-964.
Published online December 1, 2024
DOI: https://doi.org/10.7736/JKSPE.024.096
Chemically strengthened glass has recently gained attention for use in mobile device display covers due to its enhanced mechanical properties. However, cutting chemically strengthened glass poses challenges because of its high surface compressive stress, derived from the ion exchange between Na+ and K+ during the strengthening process. To address this, we propose an efficient method for cutting chemically strengthened glass by integrating electrochemical discharge (ECD) and grinding processes. The ECD process helps alleviate surface compressive stress through reverse ion exchange, while the grinding process helps mitigate compressive stress on the bottom surface without flipping the glass. Chemical composition analysis of the cross-section of glass cut along the line treated by the ECD process revealed that this method can induce reverse ion exchange on both the upper and bottom surfaces of chemically strengthened glass. Furthermore, nano-indentation hardness tests conducted on the cross-section demonstrated that the subsurface hardness could be reduced by the ECD process, indicating a relaxation of the surface compressive layers. It has also been proven that chemically strengthened glass can be successfully cut using this method, suggesting it offers a viable solution for efficient glass cutting.
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The State of the Art in Electrochemical Micro Machining Technologies
Pyeong An Lee, Eunseok Nam, Bo Hyun Kim
J. Korean Soc. Precis. Eng. 2018;35(3):229-239.
Published online March 1, 2018
DOI: https://doi.org/10.7736/KSPE.2018.35.3.229
Electrochemical micromachining (ECM) processes use anodic dissolution of metals to remove workpiece materials. ECM processes including electrochemical milling and drilling, wire electrochemical machining and electrochemical etching offer a better alternative in manufacturing complex features and nano-pattern surface. Electrochemical discharge machining (ECDM) uses high temperature of electrochemical spark, which is suitable process for micro machining of hard brittle and non-conductive materials such as glass and ceramic. In this paper, the state of the art in electrochemical micro machining technologies was reviewed. Also, some hybrid machining methods are introduced.

Citations

Citations to this article as recorded by  Crossref logo
  • Modelling Overcut Dynamics in Electrochemical Discharge Drilling of Alumina (Al 2 O 3 ) Ceramics
    Shyam Sunder Suthar, Vikas Kumar
    Transactions of the Indian Ceramic Society.2025; 84(3): 245.     CrossRef
  • Cutting of Chemically Strengthened Glass Using the Combination of Electrochemical Discharge and Grinding Processes
    Jonghwan Kim, Jihong Hwang
    Journal of the Korean Society for Precision Engineering.2024; 41(12): 957.     CrossRef
  • Study on Micro Grooving of Tungsten Carbide Using Disk Tool
    Min Ki Kim, Chan Young Yang, Dae Bo Sim, Ji Hyo Lee, Bo Hyun Kim
    Journal of the Korean Society for Precision Engineering.2024; 41(2): 123.     CrossRef
  • Machining Characteristics of Micro EDM of Silicon Carbide
    Ju Hyeon Lee, Chan Young Yang, Bo Hyun Kim
    Journal of the Korean Society for Precision Engineering.2024; 41(2): 131.     CrossRef
  • Micro Pin Fabrication of Tungsten Carbide Using Polycrystalline Diamond
    Joo A Park, Ui Seok Lee, Bo Hyun Kim
    Journal of the Korean Society for Precision Engineering.2020; 37(11): 791.     CrossRef
  • Effect of Vibration and Machining Area in the Fabrication of Micro Tool by Reverse EDM
    Yung Na, Bo Hyun Kim
    Journal of the Korean Society for Precision Engineering.2019; 36(2): 169.     CrossRef
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