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Fine Tool Steel Powders using novel Free Fall Gas Atomization Technology
Hot Gas Atomisation Economic and Engineering Aspects
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alloy powders aluminum annealing applications argon atomisation ball milling binder carbide carbon carbon nanotubes carbonitride ceramic chemical components composition compound compression copper curves decrease deformation densification developed diameter diffraction diffusion distribution droplet effect ejection electrode elements energy Euro PM2004 Powder experimental extrusion feedstock Figure flow rate formation furnace gas atomization graphite green density heating higher hot pressing hydrogen increase injection injection moulding intermetallic iron powder layer liquid lubricant materials matrix measured mechanical alloying mechanical properties melt metal injection molding metal powders method micro micrographs microstructure mixes morphology nanocomposites nanocrystalline nanoparticles nanopowders Nanotechnology nanotubes nitrogen nozzle obtained oxide oxygen parameters peaks phase Powder Metallurgy powder particles pressure production punch rapidly solidified ratio reducing ribbons samples shown shows sintering solid solution speed strength stress structure surface synthesized technique temperature tensile thermal titanium tool velocity warm compaction X-ray X-ray diffraction