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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Strain sensing, electrical and mechanical properties of polycarbonate/multiwall carbon nanotube monofilament fibers fabricated by melt spinning
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Strain sensing, electrical and mechanical properties of polycarbonate/multiwall carbon nanotube monofilament fibers fabricated by melt spinning

机译:熔融纺丝制备的聚碳酸酯/多壁碳纳米管单丝纤维的应变传感,电学和机械性能

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Polycarbonate (PC)/multiwall carbon nanotube (MWCNT)/composites were prepared by melt mixing and subsequently melt spun to monofilament fibers. Electrical, mechanical and piezoresistive (strain sensing) properties of the fibers were evaluated as a function of the MWCNT weight concentration, which was varied up to 6 wt%. After the incorporation of MWCNTs, a decrease in electrical resistivity of the fibers was found for MWCNT concentrations as low as 2 wt%. Furthermore, an important effect of the draw down ratio (DDR) on the electrical properties of the fibers was observed. While the electrical percolation threshold (phi(c)) for the bulk material was <1 wt% and similar to 1 wt% for the undrawn-extruded rods, for the melt-spun fibers phi(c) was found to be highly dependent on the DDR. Stiffness and offset yield stress of the MWCNT/PC fibers were increased starting with the addition of 1 wt% of MWCNTs. However, decreased spinnability was observed for fibers with MWCNT concentrations above 4 wt%. The coefficient that relates the electrical resistance changes to the mechanical strain (strain gage factor S-GF) was estimated for fibers with MWCNTs amounts that range from 3.5 to 6 wt%. The highest S-GF similar to 16 was found at 3.5 wt% and the lowest S-GF similar to 2.5 at 6 wt% MWCNT. Smart multifunctional textiles, made from such conductive fibers, have wide applications such as structural health monitoring, detection of gases and liquids, sensor arrays and flexible sensors. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过熔融混合制备聚碳酸酯(PC)/多壁碳纳米管(MWCNT)/复合材料,然后将其熔融纺丝成单丝纤维。评估了纤维的电,机械和压阻(应变感应)性能,该值随MWCNT重量浓度的变化而变化,最高达到6 wt%。掺入MWCNT后,发现MWCNT浓度低至2 wt%时,纤维的电阻率降低。此外,观察到拉伸比(DDR)对纤维的电性能的重要影响。松散材料的电渗流阈值(phi(c))<1 wt%,未拉伸棒的渗透阈值接近1 wt%,而熔纺纤维phi(c)高度依赖于DDR。 MWCNT / PC纤维的刚度和偏移屈服应力从添加1 wt%的MWCNT开始增加。然而,对于MWCNT浓度高于4wt%的纤维,观察到可纺性降低。对于MWCNTs量为3.5至6wt%的纤维,估计了将电阻变化与机械应变相关的系数(应变计因子S-GF)。在MWCNT为6wt%时,发现最高的类似于16的S-GF,最低的S-GF在2.5wt%下的接近2.5的2.5。由这种导电纤维制成的智能多功能纺织品具有广泛的应用,例如结构健康监测,气体和液体的检测,传感器阵列和柔性传感器。 (C)2015 Elsevier Ltd.保留所有权利。

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