Device for Wire Electrical Discharge Machining

Author:

Bosoancă Gheorghe1,Slătineanu Laurenţiu1,Coteaţă Margareta1ORCID,Bădănac Ana1,Manole Vasile1

Affiliation:

1. Technical University “Gheorghe Asachi”

Abstract

The problem approached in this paper refers to designing a device for wire electrical discharge machining (EDM) which can be used on a ram electrical discharge machine. Usually, wire electrical discharge machine is applied only on specialized electrical discharge machines. The device proposed in the paper will ensure widening the technological possibilities of the given ram EDM equipment. A principle schema of the device was established, after analyzing the main requirements specific to the device service. One took into consideration a possibility to rotate and fix the subassembly for guiding the wire electrode so that the active zone of the wire tool electrode has a horizontal, vertical or even inclined position. Another requirement was to ensure a way for achieving machining processes in cavities existing in workpieces of higher dimensions. Functioning of the designed device and strain resistance of some components were tested by using CATIA V5 software. Some optimization possibilities for this constructive solution of the device were identified.

Publisher

Trans Tech Publications, Ltd.

Reference8 articles.

1. O. Dodun, L. Slătineanu and L. Gherman, Improving the WEDM process acting on the tool electrode, Procedia Technology. 12 ( 2014 ) 427 – 432.

2. I. Gavrilaş, N.I. Marinescu, Nonconventional machining (in Romanian), Vol. 1, Editura Tehnică, Bucharest, (1991).

3. M. P. Groover, Fundamentals of modern manufacturing materials, processes and systems, John Wiley & Sons, Inc., (2007).

4. L. Slătineanu., Nonconventional technologies in machine building (in Romanian), Editura Tehnica INFO, Chisinau, (2000).

5. L. Slătineanu, M. Coteaţă, L. Gherman, I. Beşliu, M. Radovanovic, C. Mircescu, Ş. Stoica, Diminishing Shape Errors at Electrical Discharge Machining of External Cylindrical Surfaces, Applied Mechanics and Materials. 371 (2013) 305-309.

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