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August 21, 2025Materials and Manufacturing Processes0 citations

NDEDM of Hastelloy using CNT-incorporated dielectric medium utilizing composite electrodes

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RSRajeswari SambasivamRRR. RanjithSVSavita Verma

Key Points

  • NDEDM improved surface integrity by 15% compared to conventional EDM, pointing to enhanced machining capabilities.
  • Optimal conditions included 2 g/l CNT concentration resulting in a material removal rate of 0.6 mm³/min and a tool wear rate of 0.26 mm³/min.
  • Composite electrodes made from copper showed 20% better performance than aluminum due to higher conductivity.
  • Discharge currents of 32 A enhanced material removal rate, but optimal balance was achieved with a pulse-on time of 30 µs.

Abstract

This study examines Electric Discharge Machining (EDM) of Hastelloy, a nickel-based superalloy, using Near-Dry EDM (NDEDM) and conventional EDM with hydrocarbon oil. Composite electrodes made from Friction Stir Processing and Stir Casting were tested to assess the effects of CNT concentration, current, pulse-on time, and gap distance on material removal rate, tool wear rate, and surface roughness. Optimal CNT attention of 2 g/l in NDEDM increased MRR to 0.6 mm³/min and reduced TWR to 0.26 mm³/min and Ra to 1.4 µm. Copper composite electrodes outperformed aluminum composites by 20% in MRR due to better conductivity and stability. Discharge currents of 32 A increased MRR but also TWR; 30 µs pulse-on time offered the best balance between removal and erosion. Surface morphology analysis revealed uniform crater formation and minimal microcracking under optimized conditions. NDEDM exhibited 15% improvement in surface integrity compared to conventional EDM, showing its potential for precision machining applications.

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Cite This Study

Sambasivam et al. (2025) studied this question.

synapsesocial.com/papers/68af55d1ad7bf08b1eadc4fahttps://doi.org/10.1080/10426914.2025.2549762
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