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• Nano graphene oxide based dielectric used in EDM for machining a novel Nimonic alloy improves MRR , TWR and SR. • Copper electode with Nano graphene oxide based dielectric found to be most sustainable and productive. • Optimum parametric levels using Cu electrode with nano GO based dielectric are V g = 70 V, T on = 200 µs and F p = 0.5 kgf/mm 2 . The current research investigates the machinability of a novel Nimonic alloy through electro-discharge machining by assessing Material Removal Rate, Tool Wear Rate and Surface Roughness. The machining was conducted using plain dielectric and Graphene Oxide (GO) nanoparticles (5 g/l) mixed dielectric considering both Copper and Brass electrode. The novelity lies when machining with nano GO mixed dielectric. It was observed that the use of Copper electrode in machining of the alloy in nano GO mixed dielectric results in superior quality machining, demonstrating enhanced performance. The key findings include the identification of optimal parameters, where V g of 70 V, T on of 200 µs, F p of 0.5 kgf/mm 2 maximize MRR (16.231 mm 3 /min) and minimize TWR (0.0062 mm 3 /min) and SR (5.1423 µm). The microstructural study of the machined surface and sustainability study along with the detailed comparative analysis of responses assures the superiority of machining in Nano GO mixed dielectric-Cu electrode environment.
Behera et al. (Fri,) studied this question.