JOURNAL ARTICLE

Parametric Analysis of Micro Electrical Discharge Milling Process of Non-Conductive Silicon Carbide

Florian ZellerNirdesh OjhaClaas MüllerHolger Reinecke

Year: 2015 Journal:   Key engineering materials Vol: 651-653 Pages: 744-749   Publisher: Trans Tech Publications

Abstract

Silicon carbide (SiC) is a high performance ceramic material which is increasingly used in applications which demand for high temperature stable materials. The microstructuring of this material in its sintered state is a challenge for conventional machining methods due to its extraordinary mechanical properties. To overcome these limitations the process of electrical discharge machining (EDM) was modified with a so called assisting electrode (AE) to enable the structuring of non-conductive ceramics such as SiC. This paper presents a parametric analysis of micro electrical discharge milling process of non-conductive SiC for two different tool materials, tungsten carbide (WC) and copper (Cu). A full factorial design with four factors was conducted. The significant factors are shown with main effects plots. Two sets of optimized parameters for maximum material removal rate (MRR) and minimum tool wear rate (TWR) for both tool materials are presented. Hardness and surface roughness are measured and compared to the non-machined material.

Keywords:
Materials science Silicon carbide Tungsten carbide Electrical discharge machining Ceramic Electrical conductor Machining Surface roughness Parametric statistics Composite material Metallurgy

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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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