The comparison of performance of electrolytic cu and cube tool electrodes in electric discharge machining of ti6al4v alloy
Date
2021
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Abstract
The most crucial cost element of Electric Discharge Machining (EDM) is the production of tool electrode (shortly electrode). Copper, its alloys, and graphite are the most commonly used electrode materials. Selecting the proper electrode material with low production and material cost, high workpiece material removal rate (MRR) and low tool electrode wear rate (TWR) is key to reducing machining costs with EDM. In this study, the EDM performance of CuBe tool electrodes in the machining of Ti6Al4V alloy was experimentally investigated in comparison to electrolytic Cu (E-Cu) electrodes for different pulse time (ts) and discharge current (I) settings. An increase in MRR and a decrease in TWR and relative wear (RW=TWR/MRR) were observed in machining with CuBe electrodes. However, the high raw material cost of CuBe alloy is an essential drawback in widely using these electrodes in industrial applications. A new performance index formulation is introduced for EDM applications that factor in the production cost of the electrode and its life (i.e., RW). According to our results, the CuBe could be used advantageously as the electrode material at medium current settings. However, at low and high current settings, the low raw material cost of E-Cu makes it more favorable.
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Keywords
CuBe Alloy, Electrical Discharge Machining, Electrolytic Copper, Ti6Al4V, Tool Electrode
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Citation
Urtekin, Levent...et al (2021)."The comparison of performance of electrolytic cu and cube tool electrodes in electric discharge machining of ti6al4v alloy/ Ti6al4v alaşımının elektro erozyon ile işlemesinde elektrolitik cu ve cube takım elektrotlarının performansının karşılaştırılması", El-Cezeri Journal of Science and Engineering, Vol. 8, No. 3, pp. 1455-1461.
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Source
El-Cezeri Journal of Science and Engineering
Volume
8
Issue
3
Start Page
1455
End Page
1461