The performance of PVD films depends on the operational mechanical and thermal loads of coated tools or components. To withstand these loads, sufficient film strength properties, at ambient and elevated temperatures are required. The present paper deals with the mechanical properties and the impact resistance of a TiAlN coating at temperatures up to 400°C. Nanoindentations were conducted by a nanoindentation device, enabling measurements at room and elevated temperatures in an inert gas atmosphere. The obtained results were evaluated using appropriate FEM algorithms for determining the film's stress-strain curves, at the temperatures of the conducted nanoindentations. Moreover, perpendicular impact tests on the coated specimens were carried...
Methods for inspecting coating mechanical properties and adhesion on final products, considering qua...
The determination of the temperature dependent interface fatigue strength of Nano-Crystalline Diamon...
The determination of the temperature dependent interface fatigue strength of Nano-Crystalline Diamon...
The performance of physical vapour deposition (PVD) films depends on the operational mechanical and ...
Nano-impact test on PVD coatings is an efficient method for investigating film failure mechanisms. D...
Physical vapor deposition (PVD) coated surfaces are often subjected to repetitive impact loads. In s...
In the paper, innovative methods for characterizing coatings' properties at ambient and elevated tem...
A high temperature micro-impact test has been developed to assess the fracture resistance of hard co...
A methodology based on FEM-calculations and experimental tests for predicting coated tool efficiency...
International audienceTo evaluate the surface fatigue resistance of some thin nitride films obtained...
In the described investigations, nano-impact tests were conducted on PVD film surfaces previously su...
If the film of a coated component deforms plastically because of operational loads, residual stresse...
Abstract: Scratch testing is one of the most usual characterisation techniques for systems with thin...
Scratch testing is one of the most usual characterisation techniques for systems with thin hard coat...
The application of appropriate PVD coatings on cemented carbide tools plays an important role for ac...
Methods for inspecting coating mechanical properties and adhesion on final products, considering qua...
The determination of the temperature dependent interface fatigue strength of Nano-Crystalline Diamon...
The determination of the temperature dependent interface fatigue strength of Nano-Crystalline Diamon...
The performance of physical vapour deposition (PVD) films depends on the operational mechanical and ...
Nano-impact test on PVD coatings is an efficient method for investigating film failure mechanisms. D...
Physical vapor deposition (PVD) coated surfaces are often subjected to repetitive impact loads. In s...
In the paper, innovative methods for characterizing coatings' properties at ambient and elevated tem...
A high temperature micro-impact test has been developed to assess the fracture resistance of hard co...
A methodology based on FEM-calculations and experimental tests for predicting coated tool efficiency...
International audienceTo evaluate the surface fatigue resistance of some thin nitride films obtained...
In the described investigations, nano-impact tests were conducted on PVD film surfaces previously su...
If the film of a coated component deforms plastically because of operational loads, residual stresse...
Abstract: Scratch testing is one of the most usual characterisation techniques for systems with thin...
Scratch testing is one of the most usual characterisation techniques for systems with thin hard coat...
The application of appropriate PVD coatings on cemented carbide tools plays an important role for ac...
Methods for inspecting coating mechanical properties and adhesion on final products, considering qua...
The determination of the temperature dependent interface fatigue strength of Nano-Crystalline Diamon...
The determination of the temperature dependent interface fatigue strength of Nano-Crystalline Diamon...