Mechanism of EDM Intensification at Ultrasound Application

Author:

Gruzdev Andrey A.1,Morgunov Yuriy A.1,Saushkin Boris P.1

Affiliation:

1. Moscow Polytechnic University

Abstract

This paper considers some theoretical provisions on the impact ultrasonic mechanical vibrations have on the throughput of an electroerosive piercing of small-diameter holes. The approximate estimates confirm the hypothesis that the cumulative jets mechanism makes the greatest contribution to the intensification of a multiphase medium flow in the interelectrode gap. A model is proposed for a periodic localization of the cavitation region in the bottom part of the annular side gap. It allows explaining the occurrence of a multiphase medium flow during hole processing.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Radiation

Reference25 articles.

1. M.K. Mitskevich, Impact of electrode vibrations on the process of electrospark processing, Electrospark Processing of Materials. (1963) 173-178.

2. M.K. Mitskevich, A.I. Bushin, I.A. Bakuto, I. G. Nekrashevich (Eds.), Electroerosive Processing of Materials, Science and Technology, Minsk, (1988).

3. D. Kremer, J.L. Lebrun, B. Hosari, A.Moisan, Effects of ultrasonic vibrations in EDM, CIRP Annals, 38(1) (1989) 199-202.

4. I.I. Belov, A.A. Gruzdev, B.P. Saushkin, Impact of mode parameters on the technological characteristics of the operation of electroerosive piercing of holes in nozzles, Izvestia Moscow Polytechnic University,. 2(2) (2012) 77-83.

5. A.A. Gruzdev, A.N. Korolev, A.V. Selivestrov, Yu.A. Morgunov, Multi-coordinate electroerosive piercing machine EP‒310P, Technology of Mechanical Engineering. 3 (2016) 29-32.

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