Vienna
Austria
Vienna University of Technology - Christian Doppler Laboratory for Surface Engineering of High-Performance Components
Physical Vapor Deposition, Multilayer, Hard Coatings, Micromechanical Experiments, Pillar Compression
Physical Vapor Deposition, Multilayer, Hard coatings, Micromechanical Experiments, Pillar Compression
Fatigue, thin films, Synchrotron diffraction, Physical vapor deposition, micromechanics, ductility, ceramics
Physical vapor deposition (PVD), solubility, Fracture toughness, Mechanical Properties, DFT
Physical Vapor Deposition, fracture toughness, Micromechanical Testing, Diboride Coatings, Superlattice
Chromium, Borides, PVD, Thin films, Si alloying, Oxidation resistance, DFT, APT
Solubility, Transition Metal Nitride, Physical Vapor Deposition, Ab inito density functional theory, Alloying, X-ray diffraction
Magnetron Sputtering, Transition Metal Nitrides, Superlattices, fracture toughness
Borides, PVD, Segregation, oxidation resistance, High-temperature Micromechanics, mechanical properties
DFT, PVD, TiN/Nb multilayers, Hard Coatings, Micromechanical compression tests, Confined layer slip model
physical vapor deposition, Thin Films, fatigue, Synchrotron diffraction, Residual stress design
Mechanical properties testing, Synchrotron diffraction, Elastic Constants, Density Functional Theory (DFT), Stress and strain
TiB2±z thin films, Hardness anisotropy, PVD, X-ray synchrotron nano-diffraction, Crystallographic orientation