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Acoustic Emission Monitoring and Fatigue Prediction of Steel Bridge Components

机译:钢桥部件的声发射监测和疲劳预测

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Acoustic emission (AE) has been recognized for its unique capabilities as an NDT method. However, there is untapped potential for the practical application of AE to structural health monitoring and prognosis. As part of the development of a wireless sensor network for structural bridge health monitoring, this study aims to provide a framework for the estimation of fatigue damage and remaining life of steel bridge components through AE monitoring. Fourteen compact tension (CT) specimens and nine cruciform fillet welded joints were used in AE-monitored fatigue tests to investigate the correlation of AE features with crack growth in base materials and weldments. The material (structural steel A572 Grade 50) and the welding procedures are representative of those used in actual bridge construction. Based on the balance between AE signal energy and the energy release due to crack growth, deterministic models are presented to predict crack extension and remaining fatigue life for stable and unstable crack stages. The effect of weld length and fatigue load ratio on the AE activity is evaluated. The presence of noise is inevitable in the application of AE monitoring. The efficiency of data filtering and reduction algorithms is key to minimize the power and data storage demand of the wireless sensing system. AE data filtering protocols based on load pattern, source location, waveform feature analysis, and pattern recognition are proposed to minimize noise-induced AE and false indications due to wave reflections.
机译:声发射(AE)已被认为是其独特的能力作为NDT方法。然而,AE对结构健康监测和预后的实际应用存在未开发的潜力。作为用于结构桥梁健康监测的无线传感器网络的开发的一部分,该研究旨在通过IE监测提供估计钢桥部件的疲劳损坏和剩余寿命的框架。在AE监测的疲劳试验中使用了14个紧凑的张力(CT)标本和九个十字形圆角焊接接头,以研究AE特征在基础材料和焊接中的裂缝增长的特征的相关性。材料(结构钢A572 50级)和焊接程序代表了实际桥梁结构中使用的那些。基于AE信号能量与裂缝增长引起的能量释放之间的平衡,提出了确定性模型以预测稳定和不稳定裂缝阶段的裂缝延伸和剩余疲劳寿命。评估焊接长度和疲劳负荷比对AE活性的影响。在AE监测中,存在噪声是不可避免的。数据滤波和缩减算法的效率是最小化无线传感系统的功率和数据存储需求的关键。提出了基于负载模式,源位置,波形特征分析和模式识别的AE数据过滤协议,以最小化由于波反射而引起的噪声引起的AE和假指示。

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