An Experimental Study on the Monitoring of Wire Breaks in Bridge Cables

Qian Liu, Guangming Li, Qingchao Gong, Ruijuan Jiang, Yiyan Chen
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Abstract

Bridge cables are important safety components of long-span cable bridges. What’s more, how to exactly figure out broken wires in cables really matters in bridge structural health monitoring. This paper, which simulates wire breaks by releasing the steel strands one by one on the funicular machine, collates and analyzes the broken wires’ experimental data. In this process, we used fiber Bragg grating sensor (FBGS) and the metal strain gauges for data acquisition, as well as MATLAB for the polynomial curve fitting of the experimental data. The results show that the shape of the broken wires’ calibration curves is basically the same as the strain calibration curves. Based on calibration curves, engineers can determine the necessity of cable replacement by estimating the quantity of broken wires. This paper provides an effective technologic solution to detect broken wires in bridge cables accurately.
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桥梁电缆断丝监测的试验研究
桥架电缆是大跨径电缆桥架的重要安全部件。此外,如何准确地发现缆索中的断线是桥梁结构健康监测的重要内容。本文通过在索道机上逐条释放钢绞线来模拟钢丝绳断裂,对钢丝绳断裂的实验数据进行了整理和分析。在这个过程中,我们使用光纤布拉格光栅传感器(FBGS)和金属应变片进行数据采集,并使用MATLAB对实验数据进行多项式曲线拟合。结果表明,断丝校正曲线的形状与应变校正曲线基本一致。根据校准曲线,工程师可以通过估算断线数量来确定是否需要更换电缆。本文为桥梁电缆断线的准确检测提供了一种有效的技术解决方案。
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