JOURNAL ARTICLE

Batch mode micro-electro-discharge machining

Kenichi TakahataYogesh B. Gianchandani

Year: 2002 Journal:   Journal of Microelectromechanical Systems Vol: 11 (2)Pages: 102-110   Publisher: Institute of Electrical and Electronics Engineers

Abstract

This paper describes a micro-electro-discharge machining (micro-EDM) technique that uses electrode arrays to achieve high parallelism and throughput in the machining. It explores constraints in the fabrication and usage of high aspect ratio LIGA-fabricated electrode arrays, as well as the limits imposed by the pulse discharge circuits on machining rates. An array of 400 Cu electrodes with 20 /spl mu/m diameter was used to machine perforations in 50-/spl mu/m-thick stainless steel. To increase the spatial and temporal multiplicity of discharge pulses, arrays of electrodes with lithographically fabricated interconnect and block-wise independent pulse control resistance-capacitance (RC) circuits are used, resulting in >100/spl times/ improvement in throughput compared to single electrodes. However, it was found to compromise surface smoothness. A modified pulse generation scheme that exploits the parasitic capacitance of the interconnect offers similarly high machining rates and is more amenable to integration. Stainless steel workpieces of 100 /spl mu/m thickness were machined by 100 /spl mu/m/spl times/100 /spl mu/m square cross-section electrodes using in 85 s using an 80-V power supply. Surface smoothness was unaffected by electrode multiplicity. Using electrode arrays with four circuits, batch production of 36 WC-Co gears with 300 /spl mu/m outside diameter and 70 /spl mu/m thickness in 15 min is demonstrated.

Keywords:
Electrode Materials science Machining Electronic circuit Electrical discharge machining Capacitance Interconnection Parasitic capacitance Optoelectronics Fabrication Electrical engineering Metallurgy Engineering Physics

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20
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0.99
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Citation History

Topics

Advanced Machining and Optimization Techniques
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced machining processes and optimization
Physical Sciences →  Engineering →  Mechanical Engineering
Advanced Surface Polishing Techniques
Physical Sciences →  Engineering →  Biomedical Engineering
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