Development of nanograined WC-Co presents challenges for grain size measurement. In this study, standard and nanocrystalline WC-Co powders are processed by conventional and spark sintering. The resulting microstructures are characterized by image analysis of scanning electron microscopy micrographs, X-ray line broadening, and magnetic coercivity. The results are analyzed and a property map relating coercivity to WC grain size is developed. Equations for interface-controlled grain growth are transformed into the master sintering curve form and are used to analyze the grain size data from the three measurement techniques. (C) 2007 Elsevier Ltd. All rights reserved.X1121Nsci
International audienceThe evolution of the WC grain shape in Cr doped WC–Co alloys is studied at sev...
Polycrystalline materials are composed of grains and grain boundaries. The total volume of occupied...
Polycrystalline materials are composed of grains and grain boundaries. The total volume of occupied...
Rapid grain growth during the early stage of sintering has been found in many nano material systems ...
thesisCemented tungsten carbide is one of the most widely produced powder metallurgy products. For ...
Ultrafine and nanoscaled hardmetals show mechanical properties like hardness and bending strength wh...
Hardmetals are conventionally manufactured by liquid phase sintering above 1350 °C. Due to their hig...
High performance cutting tools are essential in many industry areas. Cemented carbides (WC-Co) are c...
The control of tungsten carbide (WC) grain coarsening using coarsening inhibitors is considered to b...
The binder phase grains in WC-Co-based cemented carbides are generally larger than 10 μm. We have de...
[EN] In this work ultrafine and nanocrystalline WC-Co mixtures were obtained by low energy milling i...
A 92WC-8Co powder mixture with 33 nm WC grains was prepared by strengthening ball milling and was th...
International audienceIn this work, the effects of cobalt content and C/W ratio on grain growth are ...
definition, nanocrystalline bulk materials are those with grain sizes less than 100 nm. To achieve s...
This paper studies the correlation between the microstructure and the mechanical properties at the n...
International audienceThe evolution of the WC grain shape in Cr doped WC–Co alloys is studied at sev...
Polycrystalline materials are composed of grains and grain boundaries. The total volume of occupied...
Polycrystalline materials are composed of grains and grain boundaries. The total volume of occupied...
Rapid grain growth during the early stage of sintering has been found in many nano material systems ...
thesisCemented tungsten carbide is one of the most widely produced powder metallurgy products. For ...
Ultrafine and nanoscaled hardmetals show mechanical properties like hardness and bending strength wh...
Hardmetals are conventionally manufactured by liquid phase sintering above 1350 °C. Due to their hig...
High performance cutting tools are essential in many industry areas. Cemented carbides (WC-Co) are c...
The control of tungsten carbide (WC) grain coarsening using coarsening inhibitors is considered to b...
The binder phase grains in WC-Co-based cemented carbides are generally larger than 10 μm. We have de...
[EN] In this work ultrafine and nanocrystalline WC-Co mixtures were obtained by low energy milling i...
A 92WC-8Co powder mixture with 33 nm WC grains was prepared by strengthening ball milling and was th...
International audienceIn this work, the effects of cobalt content and C/W ratio on grain growth are ...
definition, nanocrystalline bulk materials are those with grain sizes less than 100 nm. To achieve s...
This paper studies the correlation between the microstructure and the mechanical properties at the n...
International audienceThe evolution of the WC grain shape in Cr doped WC–Co alloys is studied at sev...
Polycrystalline materials are composed of grains and grain boundaries. The total volume of occupied...
Polycrystalline materials are composed of grains and grain boundaries. The total volume of occupied...