Fig. 1. Discharge circuit
Fig. 2. Normal state of discharge wave
Fig. 3. Abnormal state of discharge wave
Fig. 4. Logic signal output by threshold voltage
Fig. 5. FPGA state machine
Fig. 6. Flow-chart of gap controlling between software and firmware
Fig. 7. KOJIN EDM Discharge board ver 2.0
Fig. 8. Captured wave of wide-Td setting
Fig. 9. Captured wave of narrow-Td setting
Table 1. Ionization energy of several elements
Table 2. Wide-Td Parameters
Table 3. Narrow-Td Parameters
References
- G. M. Kim, D. K. Choi & J. N. Chu. (1998). Development of Micro-EDM Machine for Microshaft and Microhole Machining. Journal of the Korean Society of Precision Engineering, 15, 12-15.
- J. Y. Choi, C. S. Ha, S. W. Hwang, H. J. Lee, D. H. Kim & C. H. Park. (2007). The Development of Plasma Jet under Atmospheric Pressure by means of The Sub-Microsecond Pulsed Voltage. The 4th International Workshop on Microplasmas, 114.
- M. Kunieda, Y. Miyoshi, T. Takaya, N. Nakajima, Y. Zhanbo & M. Yoshida. (2003). High Speed 3D Milling by Dry EDM, Annals of the CIRP, 52(1), 147-150. https://doi.org/10.1016/S0007-8506(07)60552-6
- F. Han, S. Wachi & M. Kunieda. (2004). Improvement of machining characteristics of micro-EDM using transistor type isopulse generator and servo feed control. Precision Engineering, 28, 378-385. https://doi.org/10.1016/j.precisioneng.2003.11.005
- Z. Y. Yu, T. Masuzawa & M. Fujino. (1998). 3D micro-EDM with simple shape electrode, Part 1: machining of cavities with sharp corners and electrode wear compensation, International Journal of Electrical Machining, 102-106.
- A. Ozgedik & C. Cogun, (2006). An experimental investigation of tool wear in electric discharge machining, International Jouranl of Advanced Manufacturing Technology, 27, 488-500. https://doi.org/10.1007/s00170-004-2220-6
- K. H. Ho & S. T. Newman. (2003). State of the art electrical discharge machining (EDM), International Journal of Machine Tools & Manufacture, 43, 1287-1300. https://doi.org/10.1016/S0890-6955(03)00162-7
- S. H. Kim, H. S. Lim, G. S. Lim & B. C. Kim. (2009). Investigation of Machining Characteristics for EDM Milling. Fusion of IT and MT(Manufacturing technology), 111-112.
- H. S. Lim, A. S. Kumar & M. Rahman. (2002). Improvement of form accuracy in hybrid machining of microstructures. Journal of Electronic Materials, 31(10), 1032-1038. https://doi.org/10.1007/s11664-002-0039-1
- S. Matsui, T. Kaito, J. Fujita, M. Ishida & Y. Ochiai. (2001). Three dimensional nanostructure fabrication by focused ion beam chemical vapor deposition, Journal of JSPE, 67, 1412-1415.
- Y. T. Kim, S. J. Park & S. J. Lee. (2003). Machining of Micro-scale Shapes using Micro-EDM Process. Fusion of IT and MT(Manufacturing technology), 109-117
- H. M. Ahn, Y. T. Kim, S. J. Park & S. J. Lee. (2002).Machining Characteristics of Tool Electrode using Micro-EDM. Proceedings of the KSPE, 1003-1007.
- H. M. Ahn, Y. T. Kim, S. J. Park & S. J. Lee. (2002). Experimental Study on the Electrode Surface in WEDG, Proceedings of the KSPE, 218-222.
- Y. H. Jeong & B. K. Min. (2007). Geometry prediction of EDM-drilled holes and tool electrode shapes of micro-EDM process using simulation. International Journal of Machine Tools & Manufacture, 47(12-13), 1817-1826. https://doi.org/10.1016/j.ijmachtools.2007.04.011
- J. W. Jung, Y. H. Jeong, B. K. Min & S. J. Lee. (2008). Model-based Pulse Frequency Control for Micro-EDM Milling Using Realtime Discharge Pulse Monitoring. Journal of Manufacturing Science and Engineering, 130(3), 1-11.