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涂碳纤维导电针织物的结构设计及其传感性能 被引量:13
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作者 刘焘 邹奉元 《纺织学报》 EI CAS CSCD 北大核心 2014年第9期31-35,46,共6页
为开发传感性能稳定且能满足人体穿着舒适性的织物型传感器,选择柔性涂碳导电复合丝,采用纬平和1+1罗纹针织结构制造了织物传感器的雏形。通过对导电针织物样本的反复拉伸,寻找织物电阻的变化与织物拉伸形变之间的关系,并分析导电针织... 为开发传感性能稳定且能满足人体穿着舒适性的织物型传感器,选择柔性涂碳导电复合丝,采用纬平和1+1罗纹针织结构制造了织物传感器的雏形。通过对导电针织物样本的反复拉伸,寻找织物电阻的变化与织物拉伸形变之间的关系,并分析导电针织物的导电和传感性能。结果表明:在拉伸力作用下,随着伸长率的增加,涂碳纤维导电针织物的电阻逐渐减小,电阻变化近似于开口向上的抛物线左侧曲线;4种导电针织物中,灵敏度最高为1.52,纬平结构针织物的灵敏度高于1+1罗纹织物,并股纱线针织物比加捻纱线针织物灵敏度高;1+1罗纹组织织物的稳定性与应力松弛特性优于纬平组织织物。 展开更多
关键词 涂碳纤维 导电针织物 灵敏度 稳定性
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Surface resistivity of carbonaceous fiber/PTFE antistatic coatings
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作者 张姗 王成国 +5 位作者 袁华 朱波 于美杰 张丙明 韩荣恒 李永威 《Journal of Central South University》 SCIE EI CAS 2014年第5期1689-1695,共7页
Abstract: PAN (Polyacrylonitrile)-based carbonaceous fibers were prepared at the heat treatment temperature (HTT) range of 650 to 900 ℃. The relationships among HTT, carbon content and volume resistivity of the ... Abstract: PAN (Polyacrylonitrile)-based carbonaceous fibers were prepared at the heat treatment temperature (HTT) range of 650 to 900 ℃. The relationships among HTT, carbon content and volume resistivity of the carbonaceous fibers were investigated. The carbonaceous fibers/PTFE (Polytetrafluoroethylene) antistatic coatings were prepared by the spraying technology and the effects of carbonaceous fibers and pigments on surface resistivity of the coatings were systematically discussed. Micrographs provide insight into the antistatic mechanism of the coating. The results show that carbon content of the carbonaceous fibers increases from 68.8% to 74.8% (mass fraction) and the volume resistivity decreases drastically from 1.94× 10^-3 to 8.27× 10 ^-2.cm. The surface resistivity of the antistatic coating is adjustable between 10^5 and 10^8Ω2 to fit the different antistatic materials. Static is dissipated by a conductive network of short fibers and the tunneling effect between the neighboring fibers and conductive pigments. Conductive pigments make the conductive network more perfect and improve the antistatic ability, but insulating pigments acting as barriers for the formation of conductive channel increases the surface resistivity of the coatings. The influence of pigments on the surface resistivity drops gradually with the decrease of the carbonaceous fibers volume resistivity. 展开更多
关键词 carbonaceous fiber antistatic coatings surface resistivity PIGMENT MECHANISM
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