会议论文详细信息
International Conference on Recent Advances in Materials & Manufacturing Technologies
A study on the effect of tool electrode thickness on MRR, and TWR in electrical discharge turning process
Gohil, Vikas^1 ; Puri, Y.M.^2
Mukesh Patel School of Technology Management and Engineering, SVKMs, NMIMS University-Shirpur Campus, 425405, MS, India^1
CAD-CAM Centre, Department of Mechanical Engineering, Visvesvaraya National Institute of Technology, Nagpur
440010, MS, India^2
关键词: Cylindrical geometry;    Difficult-to-cut materials;    Electrical discharge machining;    Electrical discharges;    Machined surface;    Machining parameters;    Surface finishes;    Turning process;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/346/1/012036/pdf
DOI  :  10.1088/1757-899X/346/1/012036
来源: IOP
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【 摘 要 】

Turning by electrical discharge machining (EDM) is an emerging area of research. Generally, wire-EDM is used in EDM turning because it is not concerned with electrode tooling cost. In EDM turning wire electrode leaves cusps on the machined surface because of its small diameters and wire breakage which greatly affect the surface finish of the machined part. Moreover, one of the limitations of the process is low machining speed as compared to constituent processes. In this study, conventional EDM was employed for turning purpose in order to generate free-form cylindrical geometries on difficult-to-cut materials. Therefore, a specially designed turning spindle was mounted on a conventional die-sinking EDM machine to rotate the work piece. A conductive preshaped strip of copper as a forming tool is fed (reciprocate) continuously against the rotating work piece; thus, a mirror image of the tool is formed on the circumference of the work piece. In this way, an axisymmetric work piece can be made with small tools. The developed process is termed as the electrical discharge turning (EDT). In the experiments, the effect of machining parameters, such as pulse-on time, peak current, gap voltage and tool thickness on the MRR, and TWR were investigated and practical machining was carried out by turning of SS-304 stainless steel work piece.

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