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作 者:吴荣辉 马丽芸[1,2] 张一帆 刘向阳[2,4] 于伟东 WU Ronghui;MA Liyun;ZHANG Yifan;LIU Xiangyang;YU Weidong(College of Textiles,Donghua University,Shanghai 201620,China;Institute for Biomimetics and Soft Matter,Xiamen University,Xiamen,Fujian 361005,China;Key Laboratory of Textile Science&Technology,Ministry of Education,Donghua University,Shanghai 201620,China;Department of Physics,National University of Singapore,Singapore 117542,Singapore)
机构地区:[1]东华大学纺织学院,上海201620 [2]厦门大学生物仿生及软物质研究院,福建厦门361005 [3]东华大学纺织面料技术教育部重点实验室,上海201620 [4]新加坡国立大学物理系,新加坡117542
出 处:《纺织学报》2019年第12期45-49,62,共6页Journal of Textile Research
基 金:国家重点研发计划项目(2016YFC0802802)
摘 要:为制备柔性纱线拉伸应变传感器,将蚕丝加捻得到的蚕丝纱编织为闭口编链组织结构;通过多元醇还原硝酸银的方法制备银纳米线,在银纳米线的乙醇分散液中通过浸渍方法对基底纱线进行导电修饰,最终得到银纳米线涂层的编链组织拉伸应变传感器,研究了该组织结构拉伸应变传感器的应变-电阻传感性能。结果表明:编链组织结构的传感器具有显著的拉伸应变传感性能,该纱线传感器的电阻随着应变量的增加而减小;在拉伸应变小于5%的范围内,拉伸应变系数高达20. 14;传感器在0. 01~1. 00 Hz的拉伸频率范围内有稳定的响应,且传感器具有很好的循环稳定性。In order to prepare yarn-based strain sensor,the twisted silk filaments were woven into a closed chain stitch structure. Silver nanowire was prepared by reducing silver nitrate with polyol,base yarns were impregnated in an ethanol dispersion of the silver nanowires for conductivity modification. The strain-resistance sensing performance of the yarn-based strain sensor was studied. The results show that the yarns with the chain stitch structure have excellent strain sensing performance,the yarn resistance decreases with the increase of the strain. When the tensile strain is less than 5%,the gauge factor of the strain sensor is up to 20. 14. The sensor has stable response in the tensile frequency range from 0. 01 Hz to 1. 00 Hz,and also has good cycle stability.
关 键 词:蚕丝 银纳米线 编链组织 应变传感器 智能纺织品
分 类 号:TS141.8[轻工技术与工程—纺织材料与纺织品设计]
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