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Sensing distortion-induced fatigue cracks in steel bridges with capacitive skin sensor arrays

机译:具有电容性皮肤传感器阵列的钢结构中的变形诱导的疲劳裂缝

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Distortion-induced fatigue cracks represent the majority of fatigue cracks in steel bridges in the United States. Currently, bridge owners, such as the state departments of transportation, rely on human inspection to detect, monitor, and quantify these cracks so that appropriate repairs can be applied before cracks reach critical sizes. However, visual inspections are costly, labor intensive, and may be prone to error due to inconsistent skills among bridge inspectors. In this study, we represent a novel strain-based approach for sensing distortion-induced fatigue cracks in steel bridges using soft elastomeric capacitor (SEC) arrays. Compared with traditional foil strain gauges, the SEC technology is a large-area and flexible skin-type strain sensor that can measure a wide range of strain over a large surface. Previous investigations have verified the suitability of a single SEC for sensing an in-plane fatigue crack in a small-scale steel specimen. In this paper, we further demonstrate the ability of SECs for sensing distortion-induced fatigue cracks. The proposed strategy consists of deploying an array of SECs to cover a large fatigue-susceptible region and establishing a fatigue sensing algorithm by constructing a crack growth index (CGI) map. The effectiveness of the strategy was experimentally validated through fatigue tests of bridge girder to cross-frame connection models with distortion-induced fatigue cracks. Test results verified that by deploying an SEC array, multiple CGIs can be obtained over the fatigue-susceptible region, offering a more comprehensive picture of fatigue damage. Furthermore, by monitoring a series of CGI maps constructed under different fatigue cycles, the fatigue crack growth can be clearly visualized through the intensity change in the CGI maps.
机译:扭曲诱导的疲劳裂缝代表美国钢桥中的大部分疲劳裂缝。目前,桥业主,如国家部门的运输部门,依靠人体检查检测,监测和量化这些裂缝,以便在裂缝达到临界尺寸之前可以施加适当的维修。然而,目视检查成本高,劳动密集型,并且由于桥视检查员之间的技能不一致,可能会出现错误。在这项研究中,我们代表了一种用于使用软弹性体电容器(SEC)阵列的钢结构中的变形引起的疲劳裂缝的基于基于菌株的方法。与传统的箔菌株仪相比,SEC技术是一个大面积和柔性的皮肤型应变传感器,可以在大表面上测量各种应变。以前的研究已经验证了单秒的适用性,用于在小型钢样标本中感测平面内疲劳裂缝。在本文中,我们进一步证明了SEC用于感测变形诱导的疲劳裂缝的能力。该策略包括部署一系列秒,以覆盖大疲劳易感区域,并通过构建裂缝生长指数(CGI)图建立疲劳感测算法。通过桥梁梁的疲劳试验对具有失真诱导的疲劳裂缝的跨框架连接模型进行了实验验证了该策略的有效性。测试结果证实,通过部署SEC阵列,可以通过疲劳易感区域获得多个CGI,提供更全面的疲劳损坏。此外,通过监测在不同疲劳循环下构建的一系列CGI映射,可以通过CGI地图中的强度变化清晰可视化疲劳裂纹生长。

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