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Pressure Field Assisted Polycondensation Nonaqueous Precipitation Synthesis of Mullite Whiskers and Their Application as Epoxy Resin Reinforcement

机译:压力场辅助缩聚非水沉淀合成莫来石晶须及其在环氧树脂增强中的应用

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摘要

Mullite whiskers were novelty prepared via pressure field assisted polycondensation nonaqueous precipitation method. The precipitate phase transition in heating process, phase compositions and microstructure of samples calcined at different temperatures, effect of pressure field on precursors polycondensation and AlF amount on sample morphology, the structure and the growth mechanism of whiskers were investigated. The results indicate that pressure field caused by kettle treatment promotes the polycondensation reaction between AlF and tetraethyl orthosilicate (TEOS), the excess aluminum fluoride coordinates with the precipitate skeleton of the =Al–O–Si≡, which brings about the low mullitization temperature (900 °C). The sample prepared with the optimal amount of aluminum fluoride (1.3 of the theoretical amount) calcined at 1100 °C presents high yield and aspect ratio (>15, 100 nm in diameter) of mullite whiskers. Growth of whiskers prepared via pressure field assisted polycondensation nonaqueous precipitation method is attributed to a vapor-solid (VS) mechanism with the inducement of screw. These mullite whiskers with the structure of multi-needle whiskers connected in the same center can be distributed evenly in epoxy resin, which greatly improves the mechanical properties of epoxy resin.
机译:通过压力场辅助缩聚非水沉淀法制备了莫来石晶须。研究了加热过程中的沉淀物相变,在不同温度下煅烧的样品的相组成和微观结构,压力场对前体缩聚的影响以及AlF量对晶须形态,晶须的结构和生长机理的影响。结果表明,釜处理引起的压力场促进了AlF与原硅酸四乙酯(TEOS)之间的缩聚反应,过量的氟化铝与= Al–O–Si≡的沉淀骨架配位,从而导致较低的乳化温度( 900°C)。用最佳量的氟化铝(理论量的1.3)在1100°C下煅烧制备的样品呈现出高产率和莫来石晶须的纵横比(直径大于15,直径大于100 nm)。通过压力场辅助缩聚非水沉淀法制备的晶须的生长归因于气固(VS)机理,并产生了螺杆。这些多针晶须在同一中心连接的莫来石晶须可以在环氧树脂中均匀分布,大大提高了环氧树脂的机械性能。

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