Mastud et al., 2014 - Google Patents
Modeling debris motion in vibration assisted reverse micro electrical discharge machining process (R-MEDM)Mastud et al., 2014
View PDF- Document ID
- 7397077789751153333
- Author
- Mastud S
- Kothari N
- Singh R
- Joshi S
- Publication year
- Publication venue
- Journal of Microelectromechanical Systems
External Links
Snippet
Reverse microelectrical discharge machining (R-MEDM) process is a recent variant of microelectrical discharge machining process capable of fabricating high aspect ratio arrayed microfeatures and textured surfaces. Efficient flushing of the debris particles from the …
- 238000000034 method 0 title abstract description 65
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23H—WORKING OF METAL BY THE ACTION OF A HIGH CONCENTRATION OF ELECTRIC CURRENT ON A WORKPIECE USING AN ELECTRODE WHICH TAKES THE PLACE OF A TOOL; SUCH WORKING COMBINED WITH OTHER FORMS OF WORKING OF METAL
- B23H1/00—Electrical discharge machining, i.e. removing metal with a series of rapidly recurring electrical discharges between an electrode and a workpiece in the presence of a fluid dielectric
- B23H1/04—Electrodes specially adapted therefor or their manufacture
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Mastud et al. | Modeling debris motion in vibration assisted reverse micro electrical discharge machining process (R-MEDM) | |
Sabyrov et al. | Ultrasonic vibration assisted electro-discharge machining (edm)—An overview | |
Li et al. | A novel micro-EDM method to improve microhole machining performances using ultrasonic circular vibration (UCV) electrode | |
Jahan et al. | Evaluation of the effectiveness of low frequency workpiece vibration in deep-hole micro-EDM drilling of tungsten carbide | |
Singh et al. | Experimental investigations of energy channelization behavior in ultrasonic assisted electrochemical discharge machining | |
Maity et al. | A review on vibration-assisted EDM, micro-EDM and WEDM | |
Prihandana et al. | Effect of low-frequency vibration on workpiece in EDM processes | |
Xiaolong et al. | Enhancement of performance of wire electrochemical micromachining using a rotary helical electrode | |
CN106112150B (en) | Electro-discharge machining | |
Singh et al. | Effect of rotating magnetic field and ultrasonic vibration on micro-EDM process | |
Fang et al. | Study on wire electrochemical machining assisted with large-amplitude vibrations of ribbed wire electrodes | |
He et al. | Improving machining efficiency in wire electrochemical micromachining of array microstructures using axial vibration-assisted multi-wire electrodes | |
Shabgard et al. | Numerical and experimental study of the effects of ultrasonic vibrations of tool on machining characteristics of EDM process | |
Kumar et al. | Optimisation strategies in ultrasonic vibration assisted electrical discharge machining: a review | |
Shervani-Tabar et al. | Numerical study of the dielectric liquid around an electrical discharge generated vapor bubble in ultrasonic assisted EDM | |
Paul et al. | Effect of power source in ECDM process with FEM modeling | |
Rathod et al. | Influence of electrochemical micromachining parameters during generation of microgrooves | |
Zou et al. | Investigation on mass transfer and dissolution localization of wire electrochemical machining using vibratory ribbed wire tools | |
Mastud et al. | Experimental characterization of vibration-assisted reverse micro electrical discharge machining (EDM) for surface texturing | |
Boban et al. | Effect of recirculation zone on debris evacuation during EDM deep hole drilling | |
Maher et al. | Ultrasonic vibration assisted electrical discharge machining and micro-electrical discharge machining: a review | |
Mastud et al. | Analysis of debris motion in vibration assisted reverse micro electrical discharge machining | |
Ghoshal et al. | Electrochemical micromachining of microchannel using optimum scan feed rate | |
Mukhopadhyay et al. | Advancement in ultrasonic vibration and magnetic field assisted micro-EDM process: an overview | |
Kadirvel et al. | A review on various research trends in micro-EDM |