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Large-scale surface strain gauge for health monitoring of civil structures

机译:用于土木结构健康监测的大型表面应变仪

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摘要

Health monitoring of civil structures is a process that aims at diagnosing and localizing structural damages. It is typically conducted by visual inspections, therefore relying vastly on the monitoring frequency and individual judgement of the inspectors. The automation of the monitoring process would be greatly beneficial by increasing life expectancy of civil structures via timely maintenance, thus improving their sustainability. In this paper, we present a sensing method for automatically localizing strain over large surfaces. The sensor consists of several soft capacitors arranged in a matrix form, which can be applied over large areas. Local strains are converted into changes in capacitance among a soft capacitors matrix, permitting damage localization. The proposed sensing method has the fundamental advantage of being inexpensive to apply over large-scale surfaces. which allows local monitoring over large regions, analogous to a biological skin. In addition, its installation is simple, necessitating only limited surface preparation and deployable utilizing off-the-shelf epoxy. Here, we demonstrate the performance of the sensor at measuring static and dynamic strain, and discuss preliminary results from an application on a bridge located in Ames, IA. Results show that the proposed sensor is a promising health monitoring method for diagnosing and localizing strain on a large-scale surface.
机译:土木结构的健康监控是一个旨在诊断和定位结构损坏的过程。它通常是通过目视检查进行的,因此在很大程度上取决于检查人员的监视频率和个人判断。监测过程的自动化将通过及时维护提高民用建筑的预期寿命而大大受益,从而提高其可持续性。在本文中,我们提出了一种在大表面上自动定位应变的传感方法。该传感器由几个软电容器组成,这些软电容器以矩阵形式排列,可以应用于大面积区域。局部应变被转换为软电容器矩阵之间的电容变化,从而允许损伤定位。所提出的感测方法具有以下基本优点:便宜地应用于大型表面。可以在大范围内进行本地监控,类似于生物皮肤。此外,它的安装非常简单,仅需有限的表面处理即可使用现成的环氧树脂进行部署。在这里,我们演示了传感器在测量静态和动态应变时的性能,并讨论了位于爱荷华州埃姆斯市一座桥梁上的应用的初步结果。结果表明,所提出的传感器是一种有前途的健康监测方法,可用于在大型表面上诊断和定位应变。

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