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Structural Health Monitoring (SHM) and Determination of Surface Defects in Large Metallic Structures using Ultrasonic Guided Waves

机译:结构健康监测(SHM)和使用超声波导波确定大型金属结构中的表面缺陷

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摘要

Ultrasonic guided wave (UGW) is one of the most commonly used technologies for non-destructive evaluation (NDE) and structural health monitoring (SHM) of structural components. Because of its excellent long-range diagnostic capability, this method is effective in detecting cracks, material loss, and fatigue-based defects in isotropic and anisotropic structures. The shape and orientation of structural defects are critical parameters during the investigation of crack propagation, assessment of damage severity, and prediction of remaining useful life (RUL) of structures. These parameters become even more important in cases where the crack intensity is associated with the safety of men, environment, and material, such as ship’s hull, aero-structures, rail tracks and subsea pipelines. This paper reviews the research literature on UGWs and their application in defect diagnosis and health monitoring of metallic structures. It has been observed that no significant research work has been convened to identify the shape and orientation of defects in plate-like structures. We also propose an experimental research work assisted by numerical simulations to investigate the response of UGWs upon interaction with cracks in different shapes and orientations. A framework for an empirical model may be considered to determine these structural flaws.
机译:超声波导波(UGW)是用于结构部件的无损评估(NDE)和结构健康监测(SHM)的最常用技术之一。由于其出色的远程诊断能力,该方法可有效检测各向同性和各向异性结构中的裂纹,材料损失以及基于疲劳的缺陷。结构缺陷的形状和方向是研究裂纹扩展,评估损伤严重性以及预测结构剩余使用寿命(RUL)的关键参数。在裂纹强度与人员,环境和材料(例如船体,飞机结构,铁路轨道和海底管道)的安全性相关的情况下,这些参数变得尤为重要。本文综述了有关UGW的研究文献及其在金属结构缺陷诊断和健康监测中的应用。已经观察到,尚未进行大量的研究工作来确定板状结构中缺陷的形状和方向。我们还提出了一项以数值模拟为辅助的实验研究工作,以研究UGW在与不同形状和方向的裂纹相互作用时的响应。可以考虑使用经验模型的框架来确定这些结构性缺陷。

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