Nano Graphite Powder Assisted Electric Discharge Machining Characteristics of ZM21 Magnesium Alloy

Article Preview

Abstract:

Magnesium alloys are used in many applications, particularly in orthopaedic implants are very difficult to machine by conventional processes because of their complex 3D structure and limited slip system at room temperature. Hence there is an inherent need for alternative processes for machining such intricate profiles. Electric Discharge Machining is growing rapidly in tool rooms, die shops and even in general shop floors of modern industries to facilitate complex machining for difficult-to-machine materials and provide better surface integrity. Therefore, the use of electric discharge machining on ZM21 magnesium alloy is attempted in this paper. Nanographite powder is added for machining zone to enhance the electrical conductivity of EDM oil by way it improves the machining performance. Machining parameters such as the current, pulse on time and pulse off time were process parameters to explore their effects on the material removal rate and tool wear rate. It is observed that, an increased material removal rate was due to the enhanced electrical and thermal conductivity of the EDM oil.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

406-410

Citation:

Online since:

August 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] B.L. Mordike, T. Ebert, Magnesium Properties — applications — potential, Materials Science and Engineering A302 (2001) 37–45.

Google Scholar

[2] Z. Yang, J.P. Li, J.X. Zhang, G.W. Lorimer, J. Robson, Review on research and development of magnesium alloys, Acta Metallurgica Sininica(English Letters)21(2008)313-328.

DOI: 10.1016/s1006-7191(08)60054-x

Google Scholar

[3] M. Thirumurugan, G. M. Thirugnasambandam, S. Kumaran, T. Srinivasa rao, Microstructural refinement and mechanical properties of direct extruded ZM21 magnesium alloys, Transactions of non ferrous Metals society of China, 21 (2001) 2154-2159.

DOI: 10.1016/s1003-6326(11)60988-6

Google Scholar

[4] F. Klocke, M. Schwade, A. Klink, D. Veselovac, A. Kopp, Influence of Electro Discharge Machining of Biodegradable Magnesium on the Biocompatibility, Procedia CIRP 5 ( 2013 ) 88 – 93.

DOI: 10.1016/j.procir.2013.01.018

Google Scholar

[5] Ho. K. H, Newman. S. T , State of the art Electric Discharge machining, International Journal of Machine tools and Manufacture, 43 (2003) 1287-1300.

DOI: 10.1016/s0890-6955(03)00162-7

Google Scholar

[6] W.S. Zhao, Q.G. Meng, Z.L. Wang, The application of research on powder mixed EDM in rough machining, Journal of Material Processing Technology, 129 (2002) 30–33.

DOI: 10.1016/s0924-0136(02)00570-8

Google Scholar

[7] D.C. Montgomery, Design and Analysis of Experiments, fourth ed., Wiley, New York, (1997).

Google Scholar