This paper presents a micro investigation into electrodischarge-machining system, using piezoelectric ultrasonic motor feed drive. The drive was designed to improve the electrodischarge-machining servo control system stability of machining, quality of surface profiles of the machined products, and system dynamic time response. Research has been undertaken to examine the developed servo control feed drive in two industrial applications, electrodischarge-machining, and electrodischarge-texturing. Two arrangements were used, in this investigation. The existing servo control feed drive system, which uses a dc servomotor, and the developed system, which uses piezoelectric feed drive. The electrodischarge machining parameters including current level, on-off time, and duty cycle of the machining pulse were the main machining parameters of this investigation. The electron microscopic micro investigation into the machined samples showed that: piezoelectric ultrasonic feed drive showed a clear improvement in the quality of surface finish of the machined samples, due to the fast dynamic time response of the ultrasonic feed drive. This was accompanied by a notable reduction in the arcing and short-circuiting teething processes. This was verified by examining the electrode movements, the variations in the interelectrode gap voltage, current, and feedback control signals.

References

1.
Shafik
,
M.
,
Knight
,
J. A. G.
, and
Abdalla
,
H. S.
, 2001,“
Development of New Generation of Electrical Discharge Texturing-System Using an Ultrasonic Motor
,”
13th International Symposium for Electromachining
,
ISEM
,
Spain
, May 9–11.
2.
Shafik
,
M.
, and
Knight
,
J. A. G.
, 2002, “
Computer Simulation and Modelling of an Ultrasonic Motor Using a Single Flexural Vibrating Bar
,”
Proceeding of ESM’ 2002 International Conference
,
Germany
, June 3–5.
3.
Shafik
,
M.
, 2003, “
Computer Aided Analysis and Design of a New Servo Control Feed Drive for EDM Using Piezoelectric USM
,” Ph.D. thesis, De Montfort University, Leicester, UK.
4.
Shafik
,
M.
,
Shehab
,
E. M.
, and
Abdalla
H. S.
, 2009, “
A Linear Piezoelectric Ultrasonic Motor Using a Single Flexural Vibrating Bar for Electro Discharge System Industrial Applications
,”
Int. J. Adv. Manuf. Technol.
,
45
, pp.
287
299
.
5.
Simao
,
J.
,
Aspinwall
,
D.
,
Wise
,
M. L. H.
, and
Subari
,
K.
, 1996, “
Surface Texturing Transfer in Simulated Tandem and Temper Mill Rolling Using Electrical Discharge Texturing Rolls
,”
J. Mater. Process. Technol.
,
56
, pp.
177
189
.
6.
Simao
,
J.
,
Aspinwall
,
D.
, and
El-Menshawy
,
F.
, 1996, “
The Effect of the EDT Process on the Surface Integrity of Cold Mill Work Rolls
,”
37TH MWSP Conference Proceedings ISS
Vol.
XXXIII
, pp.
197
204
.
7.
El-Menshawy
,
M. F.
, 1988, “
Electro-Discharge Machining Apparatus
,” European patent office, Patent application 88302076.0.
8.
Tal
,
J.
, 1999, “
Servo-Motors Take Piezoceramic Transducers for a Ride
,”
Mach. Des.
,
71
, p.
23
.
9.
Ro
,
P.
, and
Hubbel
,
P.
, 1992, “
Model-Reference Adaptive-Control of Dual-Mode Micro Macro Dynamics of Ball Screws for Nanometer Motion
,”
ASME J. Dyn. Syst., Meas., Control
,
115
(
1
), pp.
103
108
.
10.
Ruszaj
,
A.
,
Zybura
,
S.
,
Skoczypiec
,
M.
, and
Urek
,
R.
, 2001, “
Electrochemical Machining Supported by Electrode Ultrasonic Vibrations
,”
13th International Symposium for Electromachining
,
ISEM
,
Spain
, May 9–11.
11.
Schulze
,
H. P.
,
Lauter
,
M.
,
Wollenberg
,
G.
,
Storr
,
M.
, and
Rehben
,
W.
, 2001, “
Investigation of the Pre-Ignition Stage in EDM
,”
13th International Symposium for Electromachining
,
ISEM
,
Spain
, May 9–11.
12.
Aspinwall
,
D.
,
Kasuga
,
Y.
, and
Mantle
,
A.
, 2001, “
The Use of Ultrasonic Machining for the Production of Holes in γ- TiAl
,”
13th International Symposium for Electromachining
,
ISEM
,
Spain
, May 9–11.
13.
Satsuta
,
T.
, and
Hirai
,
K.
, 2001, “
Surface Modification Using Electrode Transfer Induced by Discharge in Gas
,”
13th International Symposium for Electromachining
,
ISEM
,
Spain
, May 9–11.
14.
Behrens
,
A.
,
Ginzel
,
J.
, and
Bruhns
,
F.
, 2001, “
Arc Detection in Electro-Discharge Machining
,”
13th International Symposium for Electromachining
,
ISEM
,
Spain
, May 9–11.
15.
Valentin
,
I. J.
, and
Junkar
,
M.
, 2001, “
Monitoring of the Effective Size of the Electrode in EDM
,”
13th International Symposium for Electromachining
,
ISEM
,
Spain
, May 9–11.
16.
Obara
,
H.
,
Magota
,
T.
,
Ohsumi
,
T.
, and
Hatano
,
M.
, 2001, “
Development of Surface Damage Monitoring System for EDM
,”
13th International Symposium for Electromachining
,
ISEM
,
Spain
, May 9–11.
17.
Ishida
,
T.
, and
Takeuchi
,
Y.
, 2001, “
Development of Automatic Discharge Gap Controller for Curved Hole Machining
,”
13th International Symposium for Electromachining
,
ISEM
,
Spain
, May 9–11.
18.
McGeough
,
J.
, and
Rasmussen
,
H.
, 1992, “
A Model for the Surface Texturing of Steel Rolls by Electro Discharge Machining
,”
Proceedings: Mathematical and Physical Sciences
, Vol.
436
, pp.
155
164
.
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