The concept Electrochemical machining (ECM) is broadly implemented in
manufacturing area for the past two decades because of several
advantages e.g. almost negligible tool wear, resistance of W.P. to
thermal and mechanical stress and strain and the ease to form
complicated shapes in tough material. Several optimization techniques
had been implemented for studying the process factors of different
non-conventional machining processes. Analysis of surface texture by
implementation of RSM had been discussed by authors but they have not
included the ROC& MRR. A precise investigation of ROC and MRR is studied
in detail. Our aim for the present work is to optimize the independent
parameter of ECMM using S1 tool steel also called as shock resistant
tool steel, for maximizing the amount of material removal and for
minimizing the radial over cut using RSM. The multi-parameter
examinations of the MRR and ROC obtained from RSM have been in depth
analysed by contour and surface plots. Voltage is maximum effect on
machining rate whereas the E.C. largely affects ROC in comparison to
other parameters. The optimum performance parameters for ECMM setup are
determined for future investigation.