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作 者:谭艳君 霍倩 刘姝瑞 TAN Yanjun;HUO Qian;LIU Shurui(School of Textile Science and Engineering, Xi′an Polytechnic University, Xi′an, Shaanxi 710048, China;Shaanxi Engineering Research Center of Functional Materials Dyeing and Finishing, Xi′an, Shaanxi 710048, China)
机构地区:[1]西安工程大学纺织科学与工程学院,陕西西安710048 [2]陕西省功能材料染整创新工程中心,陕西西安710048
出 处:《纺织学报》2021年第7期69-75,共7页Journal of Textile Research
基 金:陕西省重点研发计划项目(2019GY-166)。
摘 要:针对聚对苯撑苯并二噁唑(PBO)纤维经紫外光照射后强力下降的问题,首先采用氧等离子体对PBO纤维表面进行改性,提高其界面性能;然后在改性PBO纤维表面涂覆纳米TiO_(2)及有机硅整理剂制备TiO_(2)/PBO复合纤维;最后对复合纤维的结构和性能进行表征与分析。结果表明:当氧等离子体处理功率为200 W、处理时间为200 s时,PBO纤维表面有凹痕,纤维拉伸强力保持率大于90%,摩擦因数增大16%,接触角减小为52.7°,说明PBO纤维的表面润湿性能增大;当纳米TiO_(2)与硅烷偶联剂质量比为1∶1时,TiO_(2)/PBO复合纤维表面有沉积凸起的纳米TiO_(2)颗粒;用紫外光照射200 h后,TiO_(2)/PBO复合纤维的断裂强力下降率比PBO原纤减少30%,说明纳米TiO_(2)涂覆后的PBO纤维抗紫外光照射性能提高。To solve the problem that the strength of poly(p-phenylenebenzoxazole)(PBO)fiber decreases after ultraviolet light irradiation,the surface of PBO fiber was modified by oxygen plasma to improve its interfacial properties.Nano-TiO_(2) and silicone finishing agent were coated on the surface of modified PBO fiber to prepare TiO_(2)/PBO composites.The structure and properties of the composites were characterized and analyzed afterwards.The results show that when the oxygen plasma treatment power is 200 W and the treatment time is 200 s,the surface of PBO fiber developed dents leading to a 16%increase in friction coefficient between fibers,and the tensile strength retention rate of the fiber is kept at more than 90%.The contact angle decreases to 52.7 degrees,indicating an increase in surface wettability of the modified PBO fiber.When the mass ratio of nano-TiO_(2) to silane coupling agent is 1∶1,the surface of TiO_(2)/PBO composite shows raised nano-TiO_(2) particles.After ultraviolet light irradiation for 200 h,the tensile strength of TiO_(2)/PBO composite becomes 30%less than that of PBO fiber,which indicates that the ultraviolet light resistance of PBO fiber coated with nano-TiO_(2) is improved.
关 键 词:聚对苯撑并二噁唑纤维 纳米TiO_(2) 界面性能 紫外光照射 拉伸强度
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