Self-propagating high-temperature synthesis of ultrafine and nanosized WC and TiC powders

I.P.Borovinskaya,
 
Ignat"eva T.I.,,
 
T.I.Ignateva,
 
V.I.Vershinnikov,
 
O.M.Miloserdova,
 
V.N.Semenova
 

Powder Metallurgy - Kiev: Frantsevich Institute for Problems of Materials Science NASU, 2008, #09/10
http://www.materials.kiev.ua/article/759

Abstract

The possible application of self-propagating high-temperature synthesis (SHS) for pre¬paring nanosized powders of refractory compounds is examined. The structurization of tung¬sten carbide and titanium carbide powders produced by SHS with a reduction stage is stud¬ied The synthesis is based on exothermic reactions between tungsten oxide or titanium oxide, carbon, and magnesium metal. The influence of starting-mixture composition, ratio of com¬ponents, and nature of adjusting additives on the particle size, morphology, and phase com¬position of WC and TiC powders is analyzed. Procedures are described for recovering tung¬sten carbide or titanium carbide from intermediate products using chemical dispersion, i.e., chemicothermal treatment of the ground cake in various solutions. As a result, impurities are removed and defect-rich intercrystalline layers are dissolved. Thus the sinter cake breaks into homogenous hexagonal WC or tetragonal TiC particles. The powder is additionally re¬fined when the final product is treated in various solutions: the uniform shrinkage of the par¬ticles is observed because of their partial solution in acid and alkaline media while the struc¬ture and properties in the central part of the substance or phase remain unchanged. The influence of the dispersion agent on the morphology and particle size of the WC and TiC powders is examined. Conditions are determined for producing TiC and WC powders con¬taining to 80% of particles smaller than 30 nm using SHS with subsequent chemical disper¬sion. Based on the research, SHS process is developed for producing ultrafine and nanosized TiC and WC powders on a commercial scale.


CHEMICAL DISPERSION, NANOSIZE POWDER, REFRACTORY COMPOUNDS, SELF-PROPAGATING HIGH-TEMPERATURE SYNTHESIS (SHS)