PARAMETRIC OPTIMIZATION IN MACHINING ON NIMONIC 75 ALLOY USING ELECTRICAL DISCHARGE MACHINING
| Author(s) | : | ASHISH KUMAR, 2Mr. S.C.Verma |
| Institution | : | M. Tech Research Scholar, Dept Of Mechanical Engineering, Sant Longowal Institute Of Engineering And Technology Longowal Sangrur Punjab |
| Published In | : | Vol. 6, Issue 2 — February 2019 |
| Page No. | : | 12-23 |
| Domain | : | Engineering |
| Type | : | Research Paper |
| ISSN (Online) | : | 2348-4470 |
| ISSN (Print) | : | 2348-6406 |
The increasing demands of machining of complex shape geometries and their high surface finish and has furtherstrengthened the need of non-traditional machining processes. Among various process, EDM has been exploredto large extent towing to surface finish and MRR are of crucial importance in the field of machining processes.Taguchi’s optimization technique, in order to optimize the cutting parameters in EDM for super alloys. Theobjective of the effect of EDM parameters on MRR, Surface finish for machining NIMONIC75 alloy. In thispresent study super alloy is used as a work piece, copper or copper Alloy Like Brass used as a tool and distilledwater is used as a dielectric fluid For experimentation, Taguchi’s orthogonal array will be followed by ANOVA toidentify the most significant factor .This would followed by developing empirical relation and optimization study.Nimonic75 (Nickel chromium base Alloys) is the most commonly used alloy. His basic chemical compositionis Ni,Cr,Ti,C,Si,Cu,Fe,and Mn. Nimonic75 is significantly stronger than other commercially pure nimonic whilststill retaining the same stiffness and thermal properties. Nimonic75 extensively used in Gas-turbine engines Heattreating equipment and fixtures Nuclear engineering aerospace, medical, marine and chemical processing.
ASHISH KUMAR, 2Mr. S.C.Verma, “PARAMETRIC OPTIMIZATION IN MACHINING ON NIMONIC 75 ALLOY USING ELECTRICAL DISCHARGE MACHINING”, International Journal of Advance Engineering and Research Development (IJAERD), Vol. 6, Issue 2, pp. 12-23, February 2019.








