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Temperature and humidity influence on the strain sensing performance of hybrid carbon nanotubes and graphite cement composites

机译:对杂交碳纳米管和石墨水泥复合材料的应变感测性能影响的温度和湿度

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Cement composites with hybrid conductive fillers carbon nanotubes (CNT) and graphite products (GP), have been tested as strain sensors under varying temperatures (0 degrees C-60 degrees C), and moisture conditions (0%-100% saturation degree (SD)). Cement pastes with 1% CNT and 5% GP (purified expanded graphite) presented resistivity values between 50 and 75 Ohm.cm, and their strain sensing response was observed to be independent of the loading conditions. However, the gage factor increased up to four times for higher temperatures, and was influenced by the temperature time history. Gage factors were also increased when drying the material up to a SD of 71% or with entirely dried samples. (C) 2021 The Authors. Published by Elsevier Ltd.
机译:用杂化导电填料碳纳米管(CNT)和石墨产品(GP)的水泥复合物已被测试为在不同温度下的应变传感器(0℃-60℃)和水分条件(0%-100%饱和度(SD) )))。 用1%CNT和5%GP(纯化的膨胀石墨)呈现电阻率值的水泥浆料在50至75℃的电阻率值,并且观察到它们的应变感应响应与负载条件无关。 然而,测量因子高达4倍的温度,受温度时间历史的影响。 当将材料干燥至71%或完全干燥的样品时,也增加了量因子。 (c)2021作者。 elsevier有限公司出版

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