In this study, effect of feedstock particle size and nozzle configuration on deposition, microstructural features, hardness and sliding wear behaviour of high velocity air fuel (HVAF)-sprayed WC-CoCr coatings was evaluated. Three different WC-CoCr powders with nominal particle sizes of 5/20 μm (fine), 5/30 μm (medium) and 15/45 μm (coarse) were sprayed employing a HVAF gun with four distinct DeLaval nozzle configurations involving different lengths and/or exit diameters. Microstructure, phase constitution and mechanical characteristics of the coatings were evaluated using SEM, EDS, XRD and micro indentation testing. Specific wear rate for all the samples was determined under sliding conditions and a comprehensive post wear analysis was cond...
Lowering the thermal energy and increasing the kinetic energy of sprayed particles by newly develope...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...
In this study, effect of feedstock particle size and nozzle configuration on deposition, microstruct...
In this study, effect of feedstock particle size and nozzle configuration on deposition, microstruct...
In this study, effect of feedstock particle size and nozzle configuration on deposition, microstruct...
In this study, sliding and abrasion wear performance of WC-CoCr coatings deposited by high velocity ...
In this study, sliding and abrasion wear performance of WC-CoCr coatings deposited by high velocity ...
In this study, sliding and abrasion wear performance of WC-CoCr coatings deposited by high velocity ...
The use of nanoscale WC grain or finer feedstock particles are possible methods of improving the per...
The use of nanoscale WC grain or finer feedstock particles are possible methods of improving the per...
The present work aimed to clarify how the characteristics of WC-CoCr hardmetal feedstock powders, na...
The present work aimed to clarify how the characteristics of WC-CoCr hardmetal feedstock powders, na...
Lowering the thermal energy and increasing the kinetic energyof hard metal particles sprayed by the ...
Lowering the thermal energy and increasing the kinetic energy of sprayed particles by newly develope...
Lowering the thermal energy and increasing the kinetic energy of sprayed particles by newly develope...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...
In this study, effect of feedstock particle size and nozzle configuration on deposition, microstruct...
In this study, effect of feedstock particle size and nozzle configuration on deposition, microstruct...
In this study, effect of feedstock particle size and nozzle configuration on deposition, microstruct...
In this study, sliding and abrasion wear performance of WC-CoCr coatings deposited by high velocity ...
In this study, sliding and abrasion wear performance of WC-CoCr coatings deposited by high velocity ...
In this study, sliding and abrasion wear performance of WC-CoCr coatings deposited by high velocity ...
The use of nanoscale WC grain or finer feedstock particles are possible methods of improving the per...
The use of nanoscale WC grain or finer feedstock particles are possible methods of improving the per...
The present work aimed to clarify how the characteristics of WC-CoCr hardmetal feedstock powders, na...
The present work aimed to clarify how the characteristics of WC-CoCr hardmetal feedstock powders, na...
Lowering the thermal energy and increasing the kinetic energyof hard metal particles sprayed by the ...
Lowering the thermal energy and increasing the kinetic energy of sprayed particles by newly develope...
Lowering the thermal energy and increasing the kinetic energy of sprayed particles by newly develope...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...
Wear leads to high material and energy losses in various industries. The manufacturing of novel nano...