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Novel corrosion sensor based on carbon nanotube composites for structural health monitoring

机译:基于碳纳米管复合材料的新型腐蚀传感器,用于结构健康监测

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摘要

Bridges are important infrastructures of all nations and are required for transportation of goods as well as human. A catastrophic failure can result in loss of lives and enormous financial hardship to the nation. Hence, there is an urgent need to monitor our infrastructures to prolong their life span, at the same time catering for heavier and faster moving traffics. Although various kinds of sensors are now available to monitor the health of the structures due to corrosion, they do not provide permanent and long term measurements. This paper investigates the fabrication of Carbon Nanotube (CNT) based composite sensors for structural health monitoring. The CNTs, a key material in nanotechnology has aroused great interest in the research community due to their remarkable mechanical, electrochemical, piezoresistive and other physical properties. Multi-wall CNT (MWCNT)/Nafion composite sensors were fabricated to evaluate their electrical properties when subjected to chemical solutions, to simulate a chemical reaction due to corrosion and real life corrosion experimental tests. The electrical resistance of the sensor electrode was dramatically changed due to corrosion. The novel sensor is expected to effectively detect corrosion in structures based on the measurement of electrical impedances of the CNT composite.
机译:桥梁是所有国家的重要基础设施,是货物和人员运输所必需的。灾难性的失败可能导致人员丧生和国家巨大的财务困难。因此,迫切需要监视我们的基础设施以延长其使用寿命,同时满足更大,更快的交通需求。尽管现在可以使用各种传感器来监视由于腐蚀引起的结构的健康状况,但它们不能提供永久性的长期测量。本文研究了基于碳纳米管(CNT)的用于结构健康监测的复合传感器的制造。由于纳米碳管具有出色的机械,电化学,压阻和其他物理特性,它是纳米技术中的关键材料,引起了研究界的极大兴趣。制造了多壁CNT(MWCNT)/ Nafion复合传感器,以评估其在化学溶液中的电性能,以模拟由于腐蚀和实际腐蚀实验而产生的化学反应。由于腐蚀,传感器电极的电阻发生了巨大变化。期望基于CNT复合材料的电阻抗的测量,新型传感器能够有效地检测结构中的腐蚀。

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