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November 30, 2025MaterialsOpen Access

Thin Wall Milling at a Maximized Axial Depth of Cut: An Analysis of Thermal and Mechanical Interactions

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Authors

MZMagdalena Zawada-Michałowska

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Overview

Analysis shows cutting force and temperature impacts in aluminium alloy machining, implying empirical models can predict outcomes.

Key Points

  • Cutting speed increase to 700 m/min raised cutting force and temperature, then decreased both values.
  • Analyses used response surface methodology to study thermal and mechanical interactions during milling.
  • Thin wall machining instability was most significant at a thickness of 1 mm but improved at 2 mm.
  • Empirical models may guide predictions for cutting conditions and outcomes in milling processes.

Cite This Study

Magdalena Zawada-Michałowska (2025) studied this question.

synapsesocial.com/papers/692b9da91d383f2b2a37a68ehttps://doi.org/10.3390/ma18235347
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  1. 1Thin Wall Milling at a Maximized Axial Depth of Cut2025
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  5. 5Investigation of Titanium Alloy Cutting Dynamics in Thin-Layer Machining2025