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Aligned carbon nanotube based ultrasonic microtransducers for durability monitoring in civil engineering

机译:基于排列的碳纳米管的超声微换能器,用于土木工程中的耐久性监测

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摘要

Structural health monitoring of porous materials such as concrete is becoming a major component in our resource-limited economy, as it conditions durable exploitation of existing facilities. Durability in porous materials depends on nanoscale features which need to be monitored in situ with nanometric resolution. To address this problem, we put forward an approach based on the development of a new nanosensor, namely a capacitive micrometric ultrasonic transducer whose vibrating membrane is made of aligned single-walled carbon nanotubes (SWNT). Such sensors are meant to be embedded in large numbers within a porous material in order to provide information on its durability by monitoring in situ neighboring individual micropores. In the present paper, we report on the feasibility of the key building block of the proposed sensor: we have fabricated well-aligned, ultra-thin, dense SWNT membranes that show above-nanometer amplitudes of vibration over a large range of frequencies spanning from 100kHz to 5MHz.
机译:多孔材料(例如混凝土)的结构健康监测已成为我们资源有限的经济的主要组成部分,因为它限制了对现有设施的持久开发。多孔材料的耐用性取决于需要以纳米分辨率原位监测的纳米级特征。为了解决这个问题,我们基于新的纳米传感器的发展提出了一种方法,即电容式微米级超声换能器,其振动膜由对准的单壁碳纳米管(SWNT)制成。这种传感器旨在大量地嵌入多孔材料中,以便通过监测原位相邻的单个微孔来提供有关其耐用性的信息。在本文中,我们报告了拟议的传感器的关键组成部分的可行性:我们制造了排列整齐,超薄,致密的SWNT膜,该膜在从到100kHz至5MHz。

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