Decarburization behavior of WC–Co particles in terms of transformation of WC to W2C and W, and formation of η and γ phases and microstructure evolution during plasma spraying have been systematically investigated in this study. The extent of the carbon loss of WC was tailored by either altering cooling conditions of substrate/pre-coating or spraying the particles into the media with different temperatures. It is revealed that loss of carbon of WC was alleviated by protection of Co during the coating formation stage. W2C exhibits epitaxial growth on the WC substrates in perpendicular direction and forms a nearly complete shell around the WC particles. η phase was formed as a result of decarburization and diffusion of associated phases and is...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...
Thermal sprayed cemented carbides such as WC-Co(Cr) and Cr3C2-NiCr coatings are widely used in wear ...
In the present investigation, the microstructure of nano tungsten carbide/cobalt (WC/Co) coating lay...
The major hurdle that limits extensive application of thermal sprayed WC–Co coatings is the undesira...
The thermal dissolution and decarburization of WC-based powders that occur in various spray processe...
Thermal sprayed tungsten carbide (WC)–cobalt (Co) coatings have been extensively employed as abrasio...
Thermal sprayed cemented carbides such as WC-Co(Cr) and Cr3C2-NiCr coatings are well known and widel...
Effects of post heat treatment of thermally sprayed nano WC-Co coatings on their mechanical properti...
In this paper, we demonstrate how the microstructure evolution in terms of nature/extent of decompos...
Atmospheric plasma spraying of WCCo particles with standard gas mixtures (ArH2) typically results in...
The characterization of WC-VC-Co and WC-Co thermal spray powders and coatings of equal Co mass fract...
Quantitative X-Ray analysis was used to quantify the phase content generated by the High Velocity Ox...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...
The consolidation of WC-Co powder with a ∼50 nanometer (nm) WC grain size (nWC) was investigated usi...
Atmospheric plasma spraying of WC coatings is typically characterized by increased decarburization, ...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...
Thermal sprayed cemented carbides such as WC-Co(Cr) and Cr3C2-NiCr coatings are widely used in wear ...
In the present investigation, the microstructure of nano tungsten carbide/cobalt (WC/Co) coating lay...
The major hurdle that limits extensive application of thermal sprayed WC–Co coatings is the undesira...
The thermal dissolution and decarburization of WC-based powders that occur in various spray processe...
Thermal sprayed tungsten carbide (WC)–cobalt (Co) coatings have been extensively employed as abrasio...
Thermal sprayed cemented carbides such as WC-Co(Cr) and Cr3C2-NiCr coatings are well known and widel...
Effects of post heat treatment of thermally sprayed nano WC-Co coatings on their mechanical properti...
In this paper, we demonstrate how the microstructure evolution in terms of nature/extent of decompos...
Atmospheric plasma spraying of WCCo particles with standard gas mixtures (ArH2) typically results in...
The characterization of WC-VC-Co and WC-Co thermal spray powders and coatings of equal Co mass fract...
Quantitative X-Ray analysis was used to quantify the phase content generated by the High Velocity Ox...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...
The consolidation of WC-Co powder with a ∼50 nanometer (nm) WC grain size (nWC) was investigated usi...
Atmospheric plasma spraying of WC coatings is typically characterized by increased decarburization, ...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...
Thermal sprayed cemented carbides such as WC-Co(Cr) and Cr3C2-NiCr coatings are widely used in wear ...
In the present investigation, the microstructure of nano tungsten carbide/cobalt (WC/Co) coating lay...