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◆ Machines2025-10-02· Machining

Effect of Friction Model Type on Tool Wear Prediction in Machining

Michael Storchak, Oleksandr Melnyk, Ярослав Анатолійович Степчин, Oksana Shyshkova, Andrii Golubovskyi, Oleksandr Vozniy

原始摘要(英文原文)· Original abstract
One of the key measures of cutting tool efficiency in machining processes is tool wear. In recent decades, numerical modeling of this phenomenon—primarily through finite element cutting models—has gained increasing importance. A crucial requirement for the reliable application of such models is the selection of an appropriate friction model, which strongly affects the accuracy of wear predictions. However, choosing the friction model type and its parameters remains a nontrivial challenge. This paper examines the effect of different friction model types and their parameters on the Archard and Usui wear model indicators, as well as on the main cutting process characteristics: cutting force components, temperature in the primary cutting zone, contact length between the tool rake face and the chip, shear angle, and chip compression ratio. To evaluate their impact on predicted tool wear—expressed qualitatively through the wear indicators of the aforementioned models—several widely used friction models implemented in commercial FEM software were applied: the shear friction model, Coulomb friction model, hybrid friction model, and constant tau model. The simulated values of these cutting process characteristics were then compared with experimental results.
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Effect of Friction Model Type on Tool Wear Prediction in Machining — 科研速览 Science Skim