Projects per year
Abstract
High-performance cutting tools are exposed to high temperatures during use. Understanding the thermal influence on the coating and substrate properties is therefore key to predict the tool performance of PVD-coated tools. In machining tests, thermal and mechanical loads cannot be separated from each other. To investigate the influence of thermal load separately, the tools in this study, TiAlN-coated cemented carbides, were initially only subjected to thermal load. Its influence on the coating and substrate properties was then analysed. To understand the effect on cutting behaviour, both thermally loaded and reference tools were used in machining tests and their wear behaviour was analysed. With this approach, the effect of the thermal load itself on the coating and substrate properties could be isolated. On key finding is that the residual compressive stresses in the TiAlN coating were reduced. In addition, the cobalt concentration at the interface of the substrate was reduced as well. In wear investigation these pre-tempered tools featured an average 24 % reduced tool life compared to the reference tools.
| Original language | English |
|---|---|
| Article number | 206289 |
| Journal | WEAR |
| Volume | 580-581 |
| E-pub ahead of print | 8 Aug 2025 |
| DOIs | |
| Publication status | Published - 15 Oct 2025 |
Keywords
- Cemented carbide
- PVD coating
- Thermal stability
- TiAlN
- Turning
- Wear
ASJC Scopus subject areas
- Condensed Matter Physics
- Mechanics of Materials
- Surfaces and Interfaces
- Surfaces, Coatings and Films
- Materials Chemistry
Projects
- 1 Active
-
GreyProPVD: Development of a Greybox Model for the Prediction of the Performance of PVD Coated Carbide Tools (project in the Priority Programme 2402: Greybox Models for the Qualification of Coated Tools for High-Performance Machining)
Maier, H. J. (Principal Investigator), Bergmann, B. (Principal Investigator) & Denkena, B. (Principal Investigator)
1 Aug 2023 → 31 Dec 2026
Project: Research
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