The effect of layer structure on corrosion and erosion resistance of thin PVD multilayer films
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Abstract
This paper contributes to the development of physical vapour deposition multilayer coatings to resist erosion in corrosive environments. The influence of the deposition parameters of the bonding layer on adhesion has been investigated. Furthermore, the influence of the layer design on the corrosion resistance and the thickness of the diamond-like carbon top layer on the erosion resistance of the investigated multilayer coating have been studied.
Corrosion and erosion tests as well as scratch tests, metallographic and scanning electron microscope investigations were carried out to characterize the coatings and their degradation behaviour.
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© 2011, Carl Hanser Verlag, München
Articles in the same Issue
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- Contents
- Award/Preisverleihung
- The Werner-Köster-Preis 2009
- Editorial
- Laudatio zum 65. Geburtstag von Univ. Prof.-Ing. habil. Bernhard Wielage
- Review
- Humboldt oder Bologna zum Dilemma der Bildung in der Ausbildung
- Original Contributions
- Plasma generators for thermal plasma processes
- Boron and phosphorous free nickel-based filler metals for brazing stainless steel in shielding gas furnaces
- Thermochemistry of brazing ceramics and metals in air
- Controlled grain size distribution and refinement of an EN AW-6082 aluminium alloy
- The effect of ball milling and wet blending on the creep behaviour of a particle reinforced 2124 Al-alloy
- Theoretical aspects of hot forming of sheet metals with graded characteristics
- Assessment of hot cracking behaviour in welds
- Sliding wear behaviour of diamond-like carbon (DLC) coatings deposited on plasma nitrided steels
- The effect of layer structure on corrosion and erosion resistance of thin PVD multilayer films
- Consolidation behaviour during manufacture of adapted piezoceramic modules for functional integrated thermoplastic composite structures
- Precipitation of Co from supersaturated Au90Co10: microstructure and kinetics
- Phase equilibria in the Fe–Mg–Si system
- Hydrothermal deposition of single crystalline germanium nanorods
- Application of the Taguchi approach to investigate the softening kinetics of AISI 304 stainless steel during hot deformation
- DGM News
- DGM News
Articles in the same Issue
- Contents
- Contents
- Award/Preisverleihung
- The Werner-Köster-Preis 2009
- Editorial
- Laudatio zum 65. Geburtstag von Univ. Prof.-Ing. habil. Bernhard Wielage
- Review
- Humboldt oder Bologna zum Dilemma der Bildung in der Ausbildung
- Original Contributions
- Plasma generators for thermal plasma processes
- Boron and phosphorous free nickel-based filler metals for brazing stainless steel in shielding gas furnaces
- Thermochemistry of brazing ceramics and metals in air
- Controlled grain size distribution and refinement of an EN AW-6082 aluminium alloy
- The effect of ball milling and wet blending on the creep behaviour of a particle reinforced 2124 Al-alloy
- Theoretical aspects of hot forming of sheet metals with graded characteristics
- Assessment of hot cracking behaviour in welds
- Sliding wear behaviour of diamond-like carbon (DLC) coatings deposited on plasma nitrided steels
- The effect of layer structure on corrosion and erosion resistance of thin PVD multilayer films
- Consolidation behaviour during manufacture of adapted piezoceramic modules for functional integrated thermoplastic composite structures
- Precipitation of Co from supersaturated Au90Co10: microstructure and kinetics
- Phase equilibria in the Fe–Mg–Si system
- Hydrothermal deposition of single crystalline germanium nanorods
- Application of the Taguchi approach to investigate the softening kinetics of AISI 304 stainless steel during hot deformation
- DGM News
- DGM News