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Fabrication of micro rods by twin-mirroring-wire tangential feed micro electrical discharge grinding
Affiliation:1. Steklov Mathematical Institute, Russian Academy of Sciences, Gubkina 8, Moscow 119991, Russia;2. National Research Nuclear University MEPhI, Kashirskoye shosse 31, Moscow 115409, Russia;1. School of Electromechanical Engineering, Guangdong University of Technology, Guangzhou 510000, China;2. Micro-Precision Engineering Group, Department of Mechanical Engineering, KU Leuven, Leuven, 3001, Belgium and Member of Flanders Make, Leuven, Belgium
Abstract:In micro electrical discharge machining (micro-EDM), the precision fabrication of cylindrical micro rods is difficult to achieve with a high processing efficiency. In order to overcome this challenge, this paper proposes a new processing method, which is denoted as twin-mirroring-wire tangential feed micro electrical discharge grinding (TMTF-WEDG). The machining principle, characteristics, and realization of the new method are firstly introduced. Then, the advantages of TMTF-WEDG in terms of machining efficiency and accuracy are demonstrated. The experimental results have shown that the machining efficiency can be increased to more than 70% in comparison with conventional tangential-feed wire electrical discharge grinding. It has also been proved that a minimum removal of material corresponding to a reduction of less than 1 μm in the diameter of a micro rod can be obtained by TMTF-WEDG. This considerably helps in improving the accuracy and repeatability of the machining process. A deviation of less than 1 μm on the diameter of a micro rod has been obtained in a length range of 800 μm. The process repeatability in machining five micro rods has been established to be below 2 μm. The proposed method is therefore of great significance for improving the machining efficiency and ensuring a high precision in the shaping process of cylindrical micro rods.
Keywords:Micro-EDM  WEDG  Twin-mirroring-wire electrode  Tangential feed  Processing efficiency  Precision machining
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