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Titanium carbide nanoparticles reinforcing nickel matrix for improving nanohardness and fretting wear properties in wet conditions
by
Dănăilă, Eliza
, Benea, Lidia
, Caron, Nadège
, Raquet, Olivier
in
Austenitic stainless steels
/ Characterization and Evaluation of Materials
/ Chemical composition
/ Chemistry and Materials Science
/ Coatings
/ Codeposition
/ Coefficient of friction
/ Corrosion
/ Electrodes
/ Electrolytes
/ Engineering Thermodynamics
/ Fretting
/ Friction resistance
/ Heat and Mass Transfer
/ Machines
/ Magnetic Materials
/ Magnetism
/ Manufacturing
/ Materials Science
/ Metallic Materials
/ Morphology
/ Nanohardness
/ Nanoparticles
/ Nanostructure
/ Nanostructured materials
/ Nickel
/ Nickel coatings
/ Nuclear power plants
/ Open circuit voltage
/ Plating
/ Pressurized water reactors
/ Processes
/ Room temperature
/ Roughness
/ Scanning electron microscopy
/ Solid Mechanics
/ Stainless steel
/ Thickness
/ Titanium
/ Titanium carbide
/ Wear
/ Wear resistance
/ 재료공학
2016
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Titanium carbide nanoparticles reinforcing nickel matrix for improving nanohardness and fretting wear properties in wet conditions
by
Dănăilă, Eliza
, Benea, Lidia
, Caron, Nadège
, Raquet, Olivier
in
Austenitic stainless steels
/ Characterization and Evaluation of Materials
/ Chemical composition
/ Chemistry and Materials Science
/ Coatings
/ Codeposition
/ Coefficient of friction
/ Corrosion
/ Electrodes
/ Electrolytes
/ Engineering Thermodynamics
/ Fretting
/ Friction resistance
/ Heat and Mass Transfer
/ Machines
/ Magnetic Materials
/ Magnetism
/ Manufacturing
/ Materials Science
/ Metallic Materials
/ Morphology
/ Nanohardness
/ Nanoparticles
/ Nanostructure
/ Nanostructured materials
/ Nickel
/ Nickel coatings
/ Nuclear power plants
/ Open circuit voltage
/ Plating
/ Pressurized water reactors
/ Processes
/ Room temperature
/ Roughness
/ Scanning electron microscopy
/ Solid Mechanics
/ Stainless steel
/ Thickness
/ Titanium
/ Titanium carbide
/ Wear
/ Wear resistance
/ 재료공학
2016
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Titanium carbide nanoparticles reinforcing nickel matrix for improving nanohardness and fretting wear properties in wet conditions
by
Dănăilă, Eliza
, Benea, Lidia
, Caron, Nadège
, Raquet, Olivier
in
Austenitic stainless steels
/ Characterization and Evaluation of Materials
/ Chemical composition
/ Chemistry and Materials Science
/ Coatings
/ Codeposition
/ Coefficient of friction
/ Corrosion
/ Electrodes
/ Electrolytes
/ Engineering Thermodynamics
/ Fretting
/ Friction resistance
/ Heat and Mass Transfer
/ Machines
/ Magnetic Materials
/ Magnetism
/ Manufacturing
/ Materials Science
/ Metallic Materials
/ Morphology
/ Nanohardness
/ Nanoparticles
/ Nanostructure
/ Nanostructured materials
/ Nickel
/ Nickel coatings
/ Nuclear power plants
/ Open circuit voltage
/ Plating
/ Pressurized water reactors
/ Processes
/ Room temperature
/ Roughness
/ Scanning electron microscopy
/ Solid Mechanics
/ Stainless steel
/ Thickness
/ Titanium
/ Titanium carbide
/ Wear
/ Wear resistance
/ 재료공학
2016
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Titanium carbide nanoparticles reinforcing nickel matrix for improving nanohardness and fretting wear properties in wet conditions
Journal Article
Titanium carbide nanoparticles reinforcing nickel matrix for improving nanohardness and fretting wear properties in wet conditions
2016
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Overview
In this study Ni/nano-TiC functional composite coatings were produced by electro-codeposition of TiC nanoparticles (50 nm mean diameter) with nickel on 304L stainless steel support. Coatings were obtained from a Watts classical solution in which TiC nanoparticles were added. The surface morphology, chemical composition, structure, roughness and thickness, were evaluated in relation to the effect of TiC nanoparticles incorporation into Ni matrix. It was found that incorporation of TiC nanoparticles into the nickel matrix produces morphological changes in the deposit and increases the roughness. The fretting wear behavior in wet conditions of the obtained coatings was evaluated on a ball-on-plate configuration. To evaluate the wet fretting wear (tribocorrosion) behavior the open circuit potential was measured before, during and after the fretting tests at room temperature in the solution that simulates the primary water circuit of Pressurized Water Reactors. The results show that Ni/nano-TiC composite coatings exhibited a low friction coefficient, high nanohardness and fretting wear resistance in wet conditions compared with pure Ni coatings.
Publisher
The Korean Institute of Metals and Materials,Springer Nature B.V,대한금속·재료학회
Subject
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