Atmospheric plasma spraying of WC coatings is typically characterized by increased decarburization, with a consequent reduction of their wear resistance. Indeed, high temperature and oxidizing atmosphere promote the appearance of brittle crystalline and amorphous phases. However, by using a high helium flow rate in a process gas mixture, plasma spraying may easily be optimized by increasing the velocity of sprayed particles and by reducing the degree of WC dissolution. To this purpose, a comparative study was performed at different spray conditions. Both WC-Co powder and coating phases were characterized by X-ray difraction. Their microstructure was investigated by scanning electron microscopy. Mechanical, dry sliding friction, and wear tes...
Nanostructured WC-Co based coatings were investigated. The main focus was given to the effect of Al ...
HVOF technology has been proposed in recent years for the production of engineered cermet coatings s...
The use of hard coatings to improve wear resistance of mechanical components is now well established...
Atmospheric plasma spraying of WCCo particles with standard gas mixtures (ArH2) typically results in...
The aim of this research was to investigate microstructural and mechanical properties of the WC-Co-C...
In this work, the Woka 5810 powders (88% tungsten carbide-12% cobalt) were used to produce coating b...
In recent years, thermal sprayed protective coatings have gained widespread acceptance for a variety...
The effects of plasma intensity and powder particle size on wear and erosion resistance have been ev...
WC-Co coatings with low degree of WC decomposition were deposited from electroless Ni-plated micro- ...
The composition WC-(W,Cr)2C-Ni (commercial designations WC-'CrC-Ni, WC-Cr3C2-Ni and WC-NiCr) is uniq...
Nanostructured WC-Co and WC-Co-Al coatings, with about 300-µm as-deposited coating thickness, were d...
► The mechanical properties of WC–12Co coatings were analyzed by nanoindentation. ► The nanohardness...
The tribological behavior of Ni-based WC-Co coatings is analyzed. The coatings were deposited on gra...
This paper looks at the tribology of thermal sprayed WC-Co based coatings and covers the high energy...
Lowering the thermal energy and increasing the kinetic energyof hard metal particles sprayed by the ...
Nanostructured WC-Co based coatings were investigated. The main focus was given to the effect of Al ...
HVOF technology has been proposed in recent years for the production of engineered cermet coatings s...
The use of hard coatings to improve wear resistance of mechanical components is now well established...
Atmospheric plasma spraying of WCCo particles with standard gas mixtures (ArH2) typically results in...
The aim of this research was to investigate microstructural and mechanical properties of the WC-Co-C...
In this work, the Woka 5810 powders (88% tungsten carbide-12% cobalt) were used to produce coating b...
In recent years, thermal sprayed protective coatings have gained widespread acceptance for a variety...
The effects of plasma intensity and powder particle size on wear and erosion resistance have been ev...
WC-Co coatings with low degree of WC decomposition were deposited from electroless Ni-plated micro- ...
The composition WC-(W,Cr)2C-Ni (commercial designations WC-'CrC-Ni, WC-Cr3C2-Ni and WC-NiCr) is uniq...
Nanostructured WC-Co and WC-Co-Al coatings, with about 300-µm as-deposited coating thickness, were d...
► The mechanical properties of WC–12Co coatings were analyzed by nanoindentation. ► The nanohardness...
The tribological behavior of Ni-based WC-Co coatings is analyzed. The coatings were deposited on gra...
This paper looks at the tribology of thermal sprayed WC-Co based coatings and covers the high energy...
Lowering the thermal energy and increasing the kinetic energyof hard metal particles sprayed by the ...
Nanostructured WC-Co based coatings were investigated. The main focus was given to the effect of Al ...
HVOF technology has been proposed in recent years for the production of engineered cermet coatings s...
The use of hard coatings to improve wear resistance of mechanical components is now well established...