<div><p>Spark plasma sintering is used to consolidate a WC-Co powder produced from milled discharged hard metal cutting inserts. The powder was mixed to 10%wt Co powder and spark plasma sintered (SPS) under 80Mpa pressure, at 1200ºC with heating rate of 160ºC/min. A reference alloy was prepared with a commercial WC powder and 10%wt. Co under the same conditions. The structures of both alloys were investigated by means of scanning electron microscopy and Vickers hardness. The results show structures with densities and hardness at the same level. SPS can be used to produce hard metal pieces directly from scrap powder without any prior chemical and thermal treatment.</p></div
In the present work, characterization of sintering behavior of Tungsten heavy alloy has been done...
For the first time we have demonstrated the densification of high-purity nanostructured (davg about ...
This work investigates the applicability of spark plasma sintering (SPS) as a solid state recycling ...
The paper describes the method for producing WC-10wt%Co hard alloy with 99.6% of the theoretical den...
WC-Co hardmetals using different starting powders were densified by spark plasma sintering (SPS). Si...
Spark plasma sintering (SPS) is an extremely fast solidification technique for compounds that are di...
Spark plasma sintering (SPS) is an extremely fast solidification technique for compounds that are di...
The single-step synthesis and densification of the WC-6Co cemented carbide starting from elemental p...
The single-step synthesis and densification of the WC-6Co cemented carbide starting from elemental p...
The single-step synthesis and densification of the WC–6Co cemented carbide starting from elemental p...
Tungsten carbide has a wide range of applications, mainly cemented carbides made of WC and Co, as we...
A 92WC-8Co powder mixture with 33 nm WC grains was prepared by strengthening ball milling and was th...
Tungsten carbide has a wide range of applications, mainly cemented carbides made of WC and Co, as we...
Tungsten carbide has a wide range of applications, mainly cemented carbides made of WC and Co, as we...
New graphite tools were designed and produced to fabricate a semi-finished product from which nine c...
In the present work, characterization of sintering behavior of Tungsten heavy alloy has been done...
For the first time we have demonstrated the densification of high-purity nanostructured (davg about ...
This work investigates the applicability of spark plasma sintering (SPS) as a solid state recycling ...
The paper describes the method for producing WC-10wt%Co hard alloy with 99.6% of the theoretical den...
WC-Co hardmetals using different starting powders were densified by spark plasma sintering (SPS). Si...
Spark plasma sintering (SPS) is an extremely fast solidification technique for compounds that are di...
Spark plasma sintering (SPS) is an extremely fast solidification technique for compounds that are di...
The single-step synthesis and densification of the WC-6Co cemented carbide starting from elemental p...
The single-step synthesis and densification of the WC-6Co cemented carbide starting from elemental p...
The single-step synthesis and densification of the WC–6Co cemented carbide starting from elemental p...
Tungsten carbide has a wide range of applications, mainly cemented carbides made of WC and Co, as we...
A 92WC-8Co powder mixture with 33 nm WC grains was prepared by strengthening ball milling and was th...
Tungsten carbide has a wide range of applications, mainly cemented carbides made of WC and Co, as we...
Tungsten carbide has a wide range of applications, mainly cemented carbides made of WC and Co, as we...
New graphite tools were designed and produced to fabricate a semi-finished product from which nine c...
In the present work, characterization of sintering behavior of Tungsten heavy alloy has been done...
For the first time we have demonstrated the densification of high-purity nanostructured (davg about ...
This work investigates the applicability of spark plasma sintering (SPS) as a solid state recycling ...