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- W2789555056 abstract "Abstract The addition of Ta to Ti1−xAlxN hard coatings has been proven to be a promising strategy to enhance their properties, consequently leading to superior performance of coated cutting tools. Within this work, tribological properties and oxidation behavior of arc evaporated Ti1−x−yAlxTayN hard coatings were systematically investigated for Ta contents varying between 0 ≤ y ≤ 0.23. The combination of ball-on-disk tests at elevated temperatures and differential scanning calorimetry with subsequent X-ray diffraction analysis provided profound insight into the microstructural changes occurring at elevated temperatures. Additionally, the investigation of the oxide layers, formed within the wear track and on the coating surface outside the wear track, allowed to establish correlations between the beneficial effect of Ta on the oxidation process, the oxide scale formation and the tribological properties. The addition of Ta to the metastable Ti1−xAlxN solid solution increases the oxidation onset temperature by >100 °C, promotes the formation of the stabile rutile phase within the oxide scale, and leads to a significant reduction of the friction coefficient." @default.
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- W2789555056 date "2018-05-01" @default.
- W2789555056 modified "2023-10-03" @default.
- W2789555056 title "High-temperature tribology and oxidation of Ti1−x−yAlxTayN hard coatings" @default.
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- W2789555056 doi "https://doi.org/10.1016/j.surfcoat.2018.02.062" @default.
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