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Large-Area Resistive Strain Sensing Sheet for Structural Health Monitoring

机译:用于结构健康监测的大面积电阻应变片

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摘要

Damage significantly influences response of a strain sensor only if it occurs in the proximity of the sensor. Thus, two-dimensional (2D) sensing sheets covering large areas offer reliable early-stage damage detection for structural health monitoring (SHM) applications. This paper presents a scalable sensing sheet design consisting of a dense array of thin-film resistive strain sensors. The sensing sheet is fabricated using flexible printed circuit board (Flex-PCB) manufacturing process which enables low-cost and high-volume sensors that can cover large areas. The lab tests on an aluminum beam showed the sheet has a gauge factor of 2.1 and has a low drift of 1.5 . The field test on a pedestrian bridge showed the sheet is sensitive enough to track strain induced by the bridge’s temperature variations. The strain measured by the sheet had a root-mean-square (RMS) error of 7 compared to a reference strain on the surface, extrapolated from fiber-optic sensors embedded within the bridge structure. The field tests on an existing crack showed that the sensing sheet can track the early-stage damage growth, where it sensed 600 peak strain, whereas the nearby sensors on a damage-free surface did not observe significant strain change.
机译:仅当应变发生在传感器附近时,损坏才会严重影响应变传感器的响应。因此,覆盖大面积的二维(2D)感应片可为结构健康监测(SHM)应用提供可靠的早期损伤检测。本文提出了一种可扩展的传感板设计,该设计由密集的薄膜电阻应变传感器阵列组成。传感片采用柔性印刷电路板(Flex-PCB)的制造工艺制造,该工艺可实现可覆盖大面积区域的低成本,大批量传感器。在铝梁上的实验室测试表明,该薄板的规格系数为2.1,低漂移为1.5。在人行天桥上的现场测试表明,该板足够灵敏,可以跟踪因桥梁温度变化而引起的应变。由薄片测得的应变与表面上的参考应变相比,均方根(RMS)误差为7,这是由嵌入桥结构中的光纤传感器推断出来的。对现有裂缝的现场测试表明,传感片可以跟踪早期损伤的增长,在该处可以检测到600个峰值应变,而在无损伤表面上附近的传感器则没有观察到明显的应变变化。

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