Hardmetals are conventionally manufactured by liquid phase sintering above 1350 °C. Due to their high surface activity, nanoscaled WC powders allow a complete densification already below 1200 °C. Extensive experiments carried out with different Co contents and grain growth inhibitors showed that a complete densification is possible between 1150 °C and 1230 °C. Here the microstructure shows a bimodal Cobalt distribution, with a thin Co layer between WC grains and a lot of small Co pools. These pools are homogenously distributed throughout the microstructure and inhibit the extension of cracks. By adjusting Co starting powders the size of these Co pools can be controlled to be around 1 μm and hardness as well as fracture toughness of these so...
WC-Co hardmetals using different starting powders were densified by spark plasma sintering (SPS). Si...
Preliminary reference Vickers hardness blocks were developed in order to ensure measurement traceabi...
The aim of this present work is to study the effect of VC and/or Cr3C2 in densification, microstruct...
A new 0.4 mu m WC powder with hardmetal properties based on optimized structures and doping additive...
Polycrystalline WC-Co hardmetals consist of coarse polycrystalline WC-particles, which itself consis...
Ultrafine and nanoscaled hardmetals show mechanical properties like hardness and bending strength wh...
The potential of nanostructured WC–Co hardmetal as reference material for Vickers hardness was resea...
Tungsten carbide- (WC-) based hardmetals or cemented carbides represent an important class of materi...
Copyright © 2013 Morteza Mahmoodan et al. This is an open access article distributed under the Creat...
The use of nanoscaled tungsten carbide (WC) powders allows the production of very fine and nanoscale...
WC-NbC-12 wt%Co hardmetals with 0.45-60 wt%NbC were prepared by solid state pulsed electric current ...
The properties of binderless WC made of super ultra-fine WC powder and densified using different sin...
Rapid grain growth during the early stage of sintering has been found in many nano material systems ...
A 92WC-8Co powder mixture with 33 nm WC grains was prepared by strengthening ball milling and was th...
[EN] In this work ultrafine and nanocrystalline WC-Co mixtures were obtained by low energy milling i...
WC-Co hardmetals using different starting powders were densified by spark plasma sintering (SPS). Si...
Preliminary reference Vickers hardness blocks were developed in order to ensure measurement traceabi...
The aim of this present work is to study the effect of VC and/or Cr3C2 in densification, microstruct...
A new 0.4 mu m WC powder with hardmetal properties based on optimized structures and doping additive...
Polycrystalline WC-Co hardmetals consist of coarse polycrystalline WC-particles, which itself consis...
Ultrafine and nanoscaled hardmetals show mechanical properties like hardness and bending strength wh...
The potential of nanostructured WC–Co hardmetal as reference material for Vickers hardness was resea...
Tungsten carbide- (WC-) based hardmetals or cemented carbides represent an important class of materi...
Copyright © 2013 Morteza Mahmoodan et al. This is an open access article distributed under the Creat...
The use of nanoscaled tungsten carbide (WC) powders allows the production of very fine and nanoscale...
WC-NbC-12 wt%Co hardmetals with 0.45-60 wt%NbC were prepared by solid state pulsed electric current ...
The properties of binderless WC made of super ultra-fine WC powder and densified using different sin...
Rapid grain growth during the early stage of sintering has been found in many nano material systems ...
A 92WC-8Co powder mixture with 33 nm WC grains was prepared by strengthening ball milling and was th...
[EN] In this work ultrafine and nanocrystalline WC-Co mixtures were obtained by low energy milling i...
WC-Co hardmetals using different starting powders were densified by spark plasma sintering (SPS). Si...
Preliminary reference Vickers hardness blocks were developed in order to ensure measurement traceabi...
The aim of this present work is to study the effect of VC and/or Cr3C2 in densification, microstruct...