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February 5, 20260 citations

Multi-objective optimization of cutting parameters for dry drilling of AISI 340 25-20 steel

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RORomdhane OthmaniMNMohamed NasserBYBilel Younsi

Key Points

  • The central aim is to optimize cutting conditions for dry drilling of AISI 304 steel while minimizing energy use and burr generation.
  • Utilized a carbide insert drill for dry drilling of AISI 304 steel.
  • Employed multi-objective optimization to minimize cutting power and burr height.
  • Conducted experiments following the design of experiments (DOE) methodology.
  • Analyzed data statistically using the ANOVA method.
  • Achieved lower cutting power and minimal burr height during dry drilling.
  • Identified optimal cutting speed and feed rate for improved machinability.
  • Provided recommendations for reducing production costs and enhancing product quality.

Abstract

The machining of stainless steels and the reduction of pollution generated by coolants and emulsions are of great importance in the industry. Several studies have been conducted to improve machinability due to challenges such as tool wear, chip formation, and cutting resistance. Additionally, compliance with strict environmental regulations has increased the cost of machining operations. This study aims to investigate the dry drilling of AISI 304 25-20 steel using a carbide insert drill. The primary objective is to optimize cutting conditions, such as cutting speed (Vc) and feed rate per revolution (f), in order to achieve low cutting power and minimal burr height. Furthermore, a multi-objective optimization approach is employed to minimize both cutting power and burr height. Experiments were conducted using the design of experiments (DOE) methodology and analyzed statistically through the ANOVA method. The models provide practical recommendations for reducing production costs and improving the quality of finished products.

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Cite This Study

Othmani et al. (2025) studied this question.

synapsesocial.com/papers/698433d8f1d9ada3c1fb153ehttps://doi.org/10.1051/matecconf/202541404002/pdf
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