In-Situ Carbon Control in the Preparation of Precursors to Boron Carbide by a Non-Aqueous Solution Technique

Synthesis of high quality boron carbide (B4C) powders is achieved by carbothermal reduction of boron oxide (13203) from a condensed boric acid (H3BO3)/polyvinyl acetate (PVAc) product. Precursor solutions are prepared via free radical polymerisation of vinyl acetate (VA) monomer in methanol in the p...

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Veröffentlicht in:材料科学与工程:中英文A版 2015 (1), p.8-20
1. Verfasser: Joshua L. Watts Peter C.Talbot Jose A. Alarco Ian D. R. Mackinnon
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Sprache:chi
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Zusammenfassung:Synthesis of high quality boron carbide (B4C) powders is achieved by carbothermal reduction of boron oxide (13203) from a condensed boric acid (H3BO3)/polyvinyl acetate (PVAc) product. Precursor solutions are prepared via free radical polymerisation of vinyl acetate (VA) monomer in methanol in the presence of dissolved H3BO3. A condensed product is then formed by flash evaporation under vacuum. As excess VA monomer is removed at the evaporation step, the polymerisation time is used to manage availability of carbon for reaction. This control of carbon facilitates dispersion of H3BO3 in solution due to the presence of residual VA monomer. B4C powders with very low residual carbon time. are formed at temperatures as low as 1,250 ~C with a 4 hour residence
ISSN:2161-6213