Publication | Closed Access
Formation of Ultrafine Metal Particles by Gas-Evaporation VI. Bcc Metals, Fe, V, Nb, Ta, Cr, Mo and W
71
Citations
23
References
1980
Year
Crystal StructureEngineeringTruncation DegreeChemistryChemical EngineeringElectron MicroscopyMaterials ScienceMaterials EngineeringCrystal MaterialBcc Metal ParticlesMetallurgical InteractionPhysical ChemistryBcc MetalsElemental MetalCrystallographyCrystal Structure DesignUltrafine Metal ParticlesMicrostructureGas-evaporation ViSurface ScienceApplied PhysicsMetallurgical Process
The crystal structures and habits of bcc metal particles have been investigated systematically by electron microscopy. The habits for the bcc structure are rhombic dodecahedra truncated by six {100} faces with various degrees of truncation from 0 to 100%. The truncation degree for Fe and V particles grown in the intermediate zone of a metal smoke is in good agreement with that for the Wulff polyhedron expected from the surface energies calculated for {110} and {100} faces. Particles of Cr, Mo and W have the A-15 type structure besides the ordinary bcc structure. The present results support the hypothesis that the A-15 type structure is stable when the particle size is small. The habits for the A-15 type structure are rhombic dodecahedra (Cr), {211} icositetrahedra (Cr and Mo) and rounded cubes (Mo and W).
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