The effect of compressive plasma flows of nitrogen on the mechanical properties, phase and element composition of a WC hard alloy (6 wt.% of Co) has been investigated in this work. Compression plasma flows were obtained using a quasistationary plasma accelerator. X-ray diffraction analysis, Auger electron spectroscopy, scanning electron microscopy and X-ray microanalysis were used as investigation techniques. It was found that the whole depth of the modified layer amounted to 15Am. The phase composition analysis showed that plasma treatment resulted in the transformation of a WC phase into a W2C one. The formation of a graphite phase was also found in the surface layer. The element composition analysis revealed surface segregation of carbo...
The paper deals with the influence of deep cryogenic treatment on the structure of sintered WC-Co ca...
Tungsten carbide powder was thermally processed in a water stabilized plasma, using the WSP plasma ...
This work investigates the mechanisms of the microstructure evolution in the melted surface layers o...
The effect of compressive plasma flows of nitrogen on the mechanical properties, phase and element c...
The influence of the nitrogen compression plasma flow impact on the phase and element composition, t...
Morphology, phase and elemental composition of a carbon steel surface layer after treatment by compr...
This paper evaluated the effect of high-energy milling and sintering temperature on the structural c...
WC-Co cemented carbides were consolidated using spark plasma sintering in the temperature 1400°C wit...
Thermal sprayed tungsten carbide (WC)–cobalt (Co) coatings have been extensively employed as abrasio...
The microstructure, phase and element composition, microhardness of the carbon steel surface layer ...
The paper describes the method for producing WC-10wt%Co hard alloy with 99.6% of the theoretical den...
Tungsten carbides-based inserts have been considered as one of the dominant hard materials in the cu...
► The mechanical properties of WC–12Co coatings were analyzed by nanoindentation. ► The nanohardness...
International audienceHigh current pulsed electron beam (HCPEB) irradiation was conducted on a WC-6%...
WC-Co hardmetals using different starting powders were densified by spark plasma sintering (SPS). Si...
The paper deals with the influence of deep cryogenic treatment on the structure of sintered WC-Co ca...
Tungsten carbide powder was thermally processed in a water stabilized plasma, using the WSP plasma ...
This work investigates the mechanisms of the microstructure evolution in the melted surface layers o...
The effect of compressive plasma flows of nitrogen on the mechanical properties, phase and element c...
The influence of the nitrogen compression plasma flow impact on the phase and element composition, t...
Morphology, phase and elemental composition of a carbon steel surface layer after treatment by compr...
This paper evaluated the effect of high-energy milling and sintering temperature on the structural c...
WC-Co cemented carbides were consolidated using spark plasma sintering in the temperature 1400°C wit...
Thermal sprayed tungsten carbide (WC)–cobalt (Co) coatings have been extensively employed as abrasio...
The microstructure, phase and element composition, microhardness of the carbon steel surface layer ...
The paper describes the method for producing WC-10wt%Co hard alloy with 99.6% of the theoretical den...
Tungsten carbides-based inserts have been considered as one of the dominant hard materials in the cu...
► The mechanical properties of WC–12Co coatings were analyzed by nanoindentation. ► The nanohardness...
International audienceHigh current pulsed electron beam (HCPEB) irradiation was conducted on a WC-6%...
WC-Co hardmetals using different starting powders were densified by spark plasma sintering (SPS). Si...
The paper deals with the influence of deep cryogenic treatment on the structure of sintered WC-Co ca...
Tungsten carbide powder was thermally processed in a water stabilized plasma, using the WSP plasma ...
This work investigates the mechanisms of the microstructure evolution in the melted surface layers o...