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Fabrication and characterization of silicon oxycarbide fibre-mats via electrospinning for high temperature applications

机译:高温应用静电纺丝硅氧化纤维垫的制造与表征

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Electrospinning is an emerging technique for synthesizing micron to submicron-sized polymer fibre supports for applications in energy storage, catalysis, filtration, drug delivery and so on. However, fabrication of electrospun ceramic fibre mats for use as a reinforcement phase in ceramic matrix composites or CMCs for aerospace applications remains largely unexplored. This is mainly due to stringent operating requirements that require a combination of properties such as low mass density, high strength, and ultrahigh temperature resistance. Herein we report fabrication of molecular precursor-derived silicon oxycarbide or SiOC fibre mats via electrospinning and pyrolysis of cyclic polysiloxanes-based precursors at significantly lower weight loadings of organic co-spin agent. Ceramic fibre mats, which were free of wrapping, were prepared by a one-step spinning (in air) and post heat-treatment for crosslinking and pyrolysis (in argon at 800 °C). The pyrolyzed fibre mats were revealed to be amorphous and a few microns in diameter. Four siloxane-based pre-ceramic polymers were used to study the influence of precursor molecular structure on the compositional and morphological differences of cross-linked and pyrolyzed products. Further thermal characterization suggested the potential of electrospun ceramic mats in high temperature applications.
机译:静电纺丝是一种用于合成微米至亚微米大小的聚合物纤维支撑件的新兴技术,用于储能,催化,过滤,药物递送等应用。然而,电纺陶瓷纤维垫的制造用作陶瓷基质复合材料或用于航空航天应用的CMC的加强阶段仍然很大程度上是未开发的。这主要是由于严格的操作要求,需要具有低质量密度,高强度和超高耐温性等性质的组合。在此,我们通过在有机共纺剂的显着较低的重量载体下,通过静电纺丝和热解来报告分子前体衍生的氧化硅氧化硅或SiOC纤维垫的制备。通过一步纺丝(在空气中)制备无包装的陶瓷纤维垫,并进行交联和热解后的热处理(在800℃下氩气)。显露热解纤维垫是无定形的,直径为几微米。使用四种硅氧烷的预陶瓷聚合物来研究前体分子结构对交联和热解产品的组成和形态差异的影响。进一步的热表征表明电纺陶瓷垫在高温应用中的电位。

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