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Effect of silica sol on the dispersion-gelation process of concentrated silica suspensions for fibre-reinforced ceramic composites

机译:硅溶胶对纤维增强陶瓷复合材料浓缩二​​氧化硅悬浮液分散胶凝过程的影响

摘要

Sol gel process of silica powders dispersed in silica sol has been used to obtain a suitable suspension for the sol infiltration technique of fibre-reinforced ceramics. Efforts have been focused on analysing the effects of polyelectrolyte content, pH, solid load and concentration of gelling agent on the flow behaviour of silica suspensions. The most adequate suspension to manufacture the matrix of composites is a weak flocculated suspension with negligible thixotropic behaviour at pH ≥ 9.5, which is composed of silica microparticles dispersed in silica sol with 41 vol.% of solid load and 1.8 wt.% of Duramax D3005. This suspension easily undergoes a transition to a gel by a slight alteration of stability conditions adding 0.08 M of NH4Cl, which reduces both the electrostatic repulsion and the pH to 8. Moreover, silica sol promotes the densification of ceramics up to 70% after sintering at 900 °C, allowing porous matrix processing of the composites. © 2012 Elsevier Ltd.
机译:分散在二氧化硅溶胶中的二氧化硅粉末的溶胶凝胶法已被用于获得适合于纤维增强陶瓷的溶胶渗透技术的悬浮液。努力集中在分析聚电解质含量,pH,固含量和胶凝剂浓度对二氧化硅悬浮液流动性能的影响。制造复合材料基质最合适的悬浮液是弱絮凝悬浮液,在pH≥9.5时触变性可忽略不计,它由分散在硅溶胶中的二氧化硅微粒组成,固含量为41%(体积),Duramax D3005为1.8%(重量)。 。通过稍微改变稳定性条件并添加0.08 M NH4Cl,该悬浮液容易转变为凝胶,这将静电排斥力和pH值均降低到8。此外,硅溶胶可促进陶瓷的致密化,最高烧结温度为70%。 900°C,可对复合材料进行多孔基质加工。 ©2012爱思唯尔有限公司。

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