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September 16, 2025Frontiers in Mechanical EngineeringOpen Access

Research and modelling of the high-speed milling process of heat-resistant high-alloy steel

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Authors

BDBakytzhan DonenbayevКШКарибек ШеровBMBakhtiyor Mardonov

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Overview

This research demonstrates high-speed milling impacts on surface quality and tool wear in heat-resistant steel, suggesting optimal cutting parameters.

Key Points

  • Increasing spindle speed reduced surface roughness by up to 18%, while higher feed rates increased it by 25%.
  • Optimal cutting parameters were identified as 6000 revolutions per minute, 1500 mm/min, and 2 mm depth.
  • Finite element simulations predicted peak temperatures consistent with experiments, enhancing understanding of thermal effects.
  • Tool wear accelerated beyond 6000–7000 revolutions per minute due to high cutting temperatures.

Cite This Study

Donenbayev et al. (2025) studied this question.

synapsesocial.com/papers/68d4538f31b076d99fa58e31https://doi.org/10.3389/fmech.2025.1680007
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