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Monitoring and Failure Analysis of Corroded Bridge Cables under Fatigue Loading Using Acoustic Emission Sensors

机译:疲劳载荷下腐蚀桥梁电缆的声发射传感器监测与故障分析

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摘要

Cables play an important role in cable-stayed systems, but are vulnerable to corrosion and fatigue damage. There is a dearth of studies on the fatigue damage evolution of corroded cable. In the present study, the acoustic emission (AE) technology is adopted to monitor the fatigue damage evolution process. First, the relationship between stress and strain is determined through a tensile test for corroded and non-corroded steel wires. Results show that the mechanical performance of corroded cables is changed considerably. The AE characteristic parameters for fatigue damage are then established. AE energy cumulative parameters can accurately describe the fatigue damage evolution of corroded cables. The failure modes in each phase as well as the type of acoustic emission source are determined based on the results of scanning electron microscopy. The waveform characteristics, damage types, and frequency distribution of the corroded cable at different damage phases are collected. Finally, the number of broken wires and breakage time of the cables are determined according to the variation in the margin index.
机译:电缆在斜拉系统中起着重要作用,但容易受到腐蚀和疲劳破坏。腐蚀电缆疲劳损伤演化的研究很少。在本研究中,采用声发射(AE)技术来监测疲劳损伤的演变过程。首先,通过腐蚀和未腐蚀钢丝的拉伸试验确定应力和应变之间的关系。结果表明,腐蚀电缆的机械性能发生了很大变化。然后建立疲劳损伤的AE特征参数。 AE能量累积参数可以准确地描述腐蚀电缆的疲劳损伤演变。根据扫描电子显微镜的结果确定每个阶段的失效模式以及声发射源的类型。收集腐蚀电缆在不同损伤阶段的波形特征,损伤类型和频率分布。最后,根据余量指数的变化确定断线的数量和电缆的断裂时间。

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