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Research & review articles are invited for publication in September 2026 (Vol. 28, Issue 3) || Submission: up to 28th September || Editorial decision: within 48 hrs.

An analysis of surface roughness in the hard milling of AISI D2 tool steel under MQCL condition using nano cutting oil

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  • An analysis of surface roughness in the hard milling of AISI D2 tool steel under MQCL condition using nano cutting oil

Pham Quang Dong *

Department of Manufacturing Engineering, Faculty of Mechanical Engineering, Thai Nguyen University of Technology, Thai Nguyen, Vietnam.
 
Research Article
Global Journal of Engineering and Technology Advances, 2025, 25(03), 281-285.
Article DOI: 10.30574/gjeta.2025.25.3.0361
DOI url: https://doi.org/10.30574/gjeta.2025.25.3.0361
Received on 20 November 2025; revised on 26 December 2025; accepted on 29 December 2025
 
The paper aims to study the influences of the cutting speed, nanoparticle concentration, and feed rate on surface roughness Ra in the hard milling process under nanofluid Minimum Quantity Cooling Lubrication (MQCL) condition. Box-Behnken experimental planning design was used to formulate the experimental matrix and analyses the interaction effects among the surveyed factors. Based on the obtained results, the proper ranges of investigated variables were provided to reach the smaller surface roughness values for each specific condition. Also, the optimal set of cutting speed V=140m/min, nanoparticle concentration NC=0.3%, and feed rate f=0.01 mm/min was determined for the predicted minimal surface roughness Ra =0.107 µm, which is the useful technical guides for the further studies and machining practice. 
 
Hard Milling; MQCL; Nanofluid; Cutting Speed; Nanoparticle Concentration; Feed Rate; Surface Roughness
 
https://gjeta.com/sites/default/files/fulltext_pdf/GJETA-2025-0361.pdf

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Pham Quang Dong. An analysis of surface roughness in the hard milling of AISI D2 tool steel under MQCL condition using nano cutting oil. Global Journal of Engineering and Technology Advances, 2025, 25(3), 281-285. Article DOI: https://doi.org/10.30574/gjeta.2025.25.3.0361

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