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Volumn 61, Issue 1, 2013, Pages 193-204
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Extremely hard, damage-tolerant ceramic coatings with functionally graded, periodically varying architecture
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Author keywords
Deformation structure; Finite element analysis; Multilayers; Nanoindentation; Physical vapor deposition (PVD)
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Indexed keywords
COATING HARDNESS;
DEFORMATION STRUCTURE;
DOMINANT DEFORMATION MECHANISM;
EXPERIMENTAL OBSERVATION;
FINITE-ELEMENT MODELS;
FUNCTIONALLY GRADED;
HIGH HARDNESS;
INELASTIC DEFORMATION;
INTERGRANULAR;
MICROSTRUCTURAL CHARACTERISTICS;
MULTI-LAYER-COATING;
NANO-COMPOSITE COATING;
NANOINDENTATION EXPERIMENTS;
NATURALLY OCCURRING;
SHEAR RESISTANCES;
STRUCTURAL CHARACTERISTICS;
TRANSGRANULAR CRACK;
TRANSGRANULAR CRACKING;
CERAMIC COATINGS;
DEFORMATION;
ENERGY DISSIPATION;
FINITE ELEMENT METHOD;
FRACTURE MECHANICS;
HARD COATINGS;
HARDNESS;
MULTILAYERS;
NANOINDENTATION;
PHYSICAL VAPOR DEPOSITION;
SHEAR STRESS;
STRESS CONCENTRATION;
STRESS CORROSION CRACKING;
TEXTURES;
TITANIUM NITRIDE;
TRANSMISSION ELECTRON MICROSCOPY;
DAMAGE TOLERANCE;
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EID: 84869082048
PISSN: 13596454
EISSN: None
Source Type: Journal
DOI: 10.1016/j.actamat.2012.09.049 Document Type: Article |
Times cited : (48)
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References (38)
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