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A large-area strain sensing technology for monitoring fatigue cracks in steel bridges

机译:一种用于监测钢结构疲劳裂缝的大面积应变传感技术

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This paper presents a novel large-area strain sensing technology for monitoring fatigue cracks in steel bridges. The technology is based on a soft elastomeric capacitor (SEC), which serves as a flexible and large-area strain gauge. Previous experiments have verified the SEC's capability to monitor low-cycle fatigue cracks experiencing large plastic deformation and large crack opening. Here an investigation into further extending the SEC's capability for long-term monitoring of fatigue cracks in steel bridges subject to traffic loading, which experience smaller crack openings. It is proposed that the peak-to-peak amplitude (pk-pk amplitude) of the sensor's capacitance measurement as the indicator of crack growth to achieve robustness against capacitance drift during long-term monitoring. Then a robust crack monitoring algorithm is developed to reliably identify the level of pk-pk amplitudes through frequency analysis, from which a crack growth index (CGI) is obtained for monitoring fatigue crack growth under various loading conditions. To generate representative fatigue cracks in a laboratory, loading protocols were designed based on constant ranges of stress intensity to limit plastic deformations at the crack tip. A series of small-scale fatigue tests were performed under the designed loading protocols with various stress intensity ratios. Test results under the realistic fatigue crack conditions demonstrated the proposed crack monitoring algorithm can generate robust CGIs which are positively correlated with crack lengths and independent from loading conditions.
机译:本文提出了一种新型大面积应变传感技术,用于监测钢结构疲劳裂缝。该技术基于软弹性电容器(秒),其用作柔性且大面积的应变计。以前的实验已经验证了SEC的能力监测经历大型塑性变形和大裂缝开口的低周疲劳裂缝。在这里,进一步延长了SEC的钢结构疲劳裂缝的能力,经历了较小的裂缝开口。提出,传感器的电容测量的峰值峰值幅度(PK-PK幅度)作为裂缝增长的指示器,以在长期监测期间实现对电容漂移的鲁棒性。然后开发了一种稳健的裂纹监测算法以可靠地识别通过频率分析的PK-PK巨大水平,从中获得裂缝生长指数(CGI),用于监测各种负载条件下的疲劳裂纹生长。为了在实验室中产生代表性的疲劳裂缝,根据应力强度的恒定范围设计装载方案,以限制裂纹尖端处的塑性变形。在设计的装载方案下进行了一系列小规模疲劳试验,具有各种应力强度比。在现实疲劳裂纹条件下的测试结果证明了所提出的裂纹监测算法可以产生稳健的CGI,其与裂缝长度呈正相关并独立于负载条件。

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