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Oxide Ceramic Nano/Microfibers Prepared by Needle-Less Electrospinning - Materials for Fiber Reinforced Composites

机译:氧化物陶瓷纳米/微纤维通过无针电螺旋材料制备 - 用于纤维增强复合材料的材料

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Nano/microfibers are already widely used as the reinforcements in various types of advanced composites for reducing weight, improving specific properties like hardness, fracture toughness and other mechanical ones. This contribution describes the preparation of the titanium dioxide nano/microfibers by needle-less electrospinning, along with a detailed characterization of the obtained polycrystalline ceramics. For spinning solutions preparation the polyvinylpyrrolidone (PVP), titanium isopropoxide (TTIP), ethanol and acetic acid were used. Influence of the ceramic precursor concentration in the spinning solution showed that decreasing the concentration of TTIP from 30 to 10 wt.% has no effect on the precursor polymer fibers shape. However, it causes deviation from the fibers oval shape (in the cross-section) up to the formation of solid ribbons or even multilayered porous ribbons. Heat treatment temperature defined the phase composition of the obtained oxide ceramics - stabile polycrystalline rutile fibers were obtained at 600 °C.
机译:纳米/微纤维已经广泛用作各种类型的先进复合材料的增强材料,用于减轻重量,改善硬度,断裂韧性和其他机械等等的特定性质。该贡献描述了通过无针电刺激制备二氧化钛纳米/微纤维,以及所获得的多晶陶瓷的详细表征。对于纺丝溶液,使用聚乙烯吡咯烷酮(PVP),钛等丙醇氧化钛(TTIP),乙醇和乙酸。陶瓷前体浓度在纺丝溶液中的影响表明,从30至10重量%重量降低TTIP的浓度。%对前体聚合物纤维的形状没有影响。然而,它导致偏离纤维椭圆形(在横截面中)直至形成固体带或甚至多层多孔带的形成。热处理温度定义了在600℃下获得所得氧化物陶瓷 - 稳定的多晶金红石纤维的相组合物。

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