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September 10, 2025MaterialsOpen Access

Multi-Objective Optimization of Tool Edge Geometry for Enhanced Cutting Performance in Turning Ti6Al4V

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Authors

ZZZichuan ZouGuizhou Normal UniversityTZTing ZhangAdvanced Materials and Devices (United States)LHLin HeKunming University of Science and Technology

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Implication

This framework demonstrates significant reductions in cutting force and temperature, highlighting improved tool life.

Key Points

  • The multi-objective optimization framework significantly reduces cutting force by 19.3%, enhancing tool efficiency.
  • Experimental validation confirms a 14.2% decrease in cutting temperature, showing improved thermal management.
  • Optimized tools exhibit enhanced wear resistance, indicated by a 33.3% increase in tool life compared to baseline tools.
  • The study utilizes a finite element model and NSGA-II to achieve comprehensive performance improvements.

Cite This Study

Zou et al. (2025) studied this question.

synapsesocial.com/papers/68c189d99b7b07f3a06135d8https://doi.org/10.3390/ma18174160
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