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Evaluation of bridge cables Corrosion Using Acoustic Emission Technique

机译:声发射技术评估桥梁电缆腐蚀

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摘要

Owing to the nature of the stress, corrosion of bridge cable may result in catastrophic failure of the structure. However, using electrochemical techniques isn't fully efficient for the detection and control on line of the corrosion phenomenon. A non-destructive testing method based on acoustic emission technique monitoring bridge cable corrosion was explored. The steel strands were placed at room temperature in 5% NaCl solution. Acoustic emission (AE) characteristic parameters were recorded in the whole corrosion experiment process. Based on the plot of cumulated acoustic activity, the bridge cables corrosion included three stages. It can be clearly seen that different stages have different acoustic emission signal characteristics. The AE characteristic parameters would be increased with cables corrosion development. Finally, the bridge cables corrosion experiment with different stress state and different corrosion environment was performed. The results shows that stress magnitude only affects the bridge cable failure time, however, the AE characteristic parameters value has changed a little. It was verified that AE technique can be used to detect the bridge cable early corrosion, investigating corrosion developing trend, and in monitoring and evaluating corrosion damages.
机译:由于应力的性质,桥梁电缆的腐蚀可能导致结构的灾难性破坏。但是,使用电化学技术并不是完全有效地在线检测和控制腐蚀现象。探索了一种基于声发射技术监测桥梁电缆腐蚀的无损检测方法。将钢绞线置于室温下的5%NaCl溶液中。在整个腐蚀实验过程中记录声发射(AE)特征参数。根据累积的声活动图,桥梁电缆的腐蚀分为三个阶段。可以清楚地看到,不同的阶段具有不同的声发射信号特性。 AE特征参数会随着电缆腐蚀的发展而增加。最后,进行了不同应力状态和腐蚀环境下的桥梁电缆腐蚀试验。结果表明,应力大小仅影响桥梁电缆的失效时间,但AE特征参数值却发生了一些变化。事实证明,声发射技术可用于桥梁电缆的早期腐蚀检测,研究腐蚀的发展趋势,以及监测和评估腐蚀损伤。

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