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Self-Sensing Carbon Nanotube Composites Exposed to Glass Transition Temperature

机译:自感碳纳米管复合材料暴露于玻璃化转变温度

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摘要

This paper reported the effect of high temperature on the electro-mechanical behavior of carbon nanotube (CNT) reinforced epoxy composites. CNT/epoxy composites were fabricated by dispersing CNTs in the epoxy matrix using a solution casting method. Electrical conductivity measurements obtained for the CNT/epoxy composites indicated a steadily increasing directly proportional relationship with CNT concentration with a percolation threshold at 0.25 wt %, reaching a maximum of up to 0.01 S/m at 2.00 wt % CNTs. The electro-mechanical behavior of CNT/epoxy composites were investigated at a room temperature under the static and cyclic compressive loadings, resulting that the change in resistance of CNT/epoxy composites was reduced as increasing CNT concentration with good repeatability. This is due to well-networked CNTs conducting pathways created within the solid epoxy matrix observed by scanning electron microscopy. Temperature significantly affects the electro-mechanical behavior of CNT/epoxy composites. In particular, the electro-mechanical behavior of CNT/epoxy composites below the glass transition temperature showed the similar trend with those at room temperature, whereas the electro-mechanical behavior of CNT/epoxy composites above the glass transition temperature showed an opposite change in resistance with poor repeatability due to unstable CNT network in epoxy matrix.
机译:本文报道了高温对碳纳米管(CNT)增强环氧复合材料的电力行为的影响。通过使用溶液浇铸方法将CNT分散在环氧基质中的CNT /环氧复合材料制备。获得的用于CNT /环氧复合材料的电导率测量结果表明,在0.25wt%的渗透阈值下稳定地增加了与CNT浓度的比例关系,最大可达0.01秒,最高为0.01秒CNT。在静态和环状压缩载体下的室温下研究了CNT /环氧复合材料的电力行为,从而降低了CNT /环氧复合材料的电阻的变化,因为增加了具有良好重复性的CNT浓度。这是由于通过扫描电子显微镜观察到的固体环氧基质内产生的良好网络的CNT途径。温度显着影响CNT /环氧复合材料的电力行为。特别地,在玻璃化转变温度下方的CNT /环氧复合材料的电力行为显示出与室温下的相似趋势,而CNT /环氧复合材料的电力行为在玻璃化转变温度上方的相反变化由于环氧基质中不稳定的CNT网络,可重复性差。

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