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Preparation and Mechanism of Nano-TiO_2 Coatings on Poly (p-phenylene-benzobisoxazole) (PBO) Fiber

机译:聚对苯撑-苯并二恶唑(PBO)纤维上纳米TiO_2涂层的制备及机理

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Nano-TiCVPBO composite fiber was prepared with a chemical method by depositing nano-TiO_2 on the surface of PBO fiber which was treated by silane coupling agent. The process parameters on the preparation of nano-TiO_2/PBO composite fiber were optimized according to the interfacial adhesion between the composite fiber and epoxy resin, and the coating mechanism of nano-TiO_2/PBO composite fiber was also discussed. The results show that the uniform nano-TiO_2/PBO composite fiber with high interfacial adhesion can be prepared on the PBO fiber which was pretreated by silane coupling agent with a concentration of 1.5 % for 35 min at room temperature, in which the nano-TiO_2 aqueous solution with a concentration of 1.0wt% was ultrasonic dispersed for lh in alkaline environment (pH 11), and then the PBO fiber was immersed in the dispersed solution at 60 ℃ for 6 h to prepare nano-TiO_2/PBO composite fiber. The single fiber pull-out strength of the prepared composite fiber was increased by 85.28 % compared with that of the untreated PBO fiber. Silane coupling agent was a bridge of PBO and nano-TiO_2, hydrogen bond association and like dissolves like were attributed to the improvement of interfacial adhesion between nano-TiO_2 and PBO fiber.
机译:采用化学方法制备纳米TiOCVPBO复合纤维,方法是将纳米TiO_2沉积在经过硅烷偶联剂处理的PBO纤维表面。根据复合纤维与环氧树脂的界面结合力,优化了制备纳米TiO_2 / PBO复合纤维的工艺参数,并探讨了纳米TiO_2 / PBO复合纤维的包覆机理。结果表明,在室温下用浓度为1.5%的硅烷偶联剂预处理35分钟的PBO纤维,可以制备出高界面粘合力的均匀纳米TiO_2 / PBO复合纤维,其中纳米TiO_2将浓度为1.0wt%的水溶液在碱性环境(pH 11)中超声分散1h,然后将PBO纤维浸入60℃的分散溶液中6h,制备出纳米TiO_2 / PBO复合纤维。与未处理的PBO纤维相比,所制备的复合纤维的单纤维抗拉强度提高了85.28%。硅烷偶联剂是PBO与纳米TiO_2之间的桥梁,氢键缔合等类似物的溶解是由于纳米TiO_2与PBO纤维之间的界面粘合性的提高。

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