Synergistic behaviour of ultrasonic vibration and mixed electrolytes on machined surface morphology in ECG of Hastelloy C276

The surface morphology and topography are functionally important; hence, the present study explores the synergistic effect of ultrasonic vibration (UV) and mixed electrolytes on enhancing the surface morphology of Hastelloy C276 during Electrochemical Grinding (ECG). Two sets of experiments were performed: conventional ECG and UVECG using mixed electrolyte solutions of NaNO3 and NaCl at various proportions. Surface parameters and topography were measured by a 3D profilometer and SEM. Results indicated that NaCl yielded relatively lower surface roughness with minor microcracks, whereas NaNO3 provided smoother surfaces. The mixed electrolytes (2:1 ratio) produced a superior finish, improved surface quality by around 39%, reduced pitting, and enabled uniform material removal with UV. Further, the material ratio curve confirms that the mixed electrolyte has lower peak and valley void volumes and reduced surface irregularities, with lower Mr2% in UVECG. These findings demonstrate that integrating UV-assistance with optimized mixed electrolytes significantly improves the surface quality of Hastelloy C276.

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Publication Details

Journal
Transactions of the IMF
Published
2026-09-09
DOI
https://doi.org/10.1080/00202967.2026.2713101
Primary Topic
Advanced Surface Polishing Techniques
Type
article
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article

Synergistic behaviour of ultrasonic vibration and mixed electrolytes on machined surface morphology in ECG of Hastelloy C276

Tej Pratap, Ashutosh Maurya, Avanish Kumar Dubey
Transactions of the IMF
Advanced Surface Polishing Techniques
article

Synergistic behaviour of ultrasonic vibration and mixed electrolytes on machined surface morphology in ECG of Hastelloy C276

Tej Pratap, Ashutosh Maurya, Avanish Kumar Dubey
article en

Abstract

The surface morphology and topography are functionally important; hence, the present study explores the synergistic effect of ultrasonic vibration (UV) and mixed electrolytes on enhancing the surface morphology of Hastelloy C276 during Electrochemical Grinding (ECG). Two sets of experiments were performed: conventional ECG and UVECG using mixed electrolyte solutions of NaNO3 and NaCl at various proportions. Surface parameters and topography were measured by a 3D profilometer and SEM. Results indicated that NaCl yielded relatively lower surface roughness with minor microcracks, whereas NaNO3 provided smoother surfaces. The mixed electrolytes (2:1 ratio) produced a superior finish, improved surface quality by around 39%, reduced pitting, and enabled uniform material removal with UV. Further, the material ratio curve confirms that the mixed electrolyte has lower peak and valley void volumes and reduced surface irregularities, with lower Mr2% in UVECG. These findings demonstrate that integrating UV-assistance with optimized mixed electrolytes significantly improves the surface quality of Hastelloy C276.

Transactions of the IMF
Motilal Nehru National Institute of Technology (IN)
Openalex Percentile: Top 20%
Advanced Surface Polishing Techniques
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