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Multi-mode reverse time migration damage imaging using ultrasonic guided waves

机译:多模逆时间迁移损坏成像使用超声波引导波

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The sensitivity of Lamb wave modes to a particular defect or instance of damage is dependent on various factors (e.g., the local strain energy density due to that wave mode). As a result, different modes will be more useful than others for damage detection and quantification, dependent on damage type and location. For example, prior work in the field has shown that out-of-plane modes may have a higher sensitivity than in-plane modes to surface defects in plates. The excitability of a certain data acquisition system and the corresponding resolution for damage imaging also varies with frequency. The aim of the present work was to develop a mull-mode damage imaging technique that enables characterization of damage type and size, general sensitivity to unknown damage types, higher resolution imaging, and delectability regardless of the data acquisition system used. A reverse-time migration (RTM) imaging algorithm was combined with a numerical simulator-the three-dimensional (3D) elastodynamic finite integration technique (EFIT)-to provide mull-mode damage imaging. The approach was applied to two simulated case studies featuring damaged isotropic plates. Sensitivities of damage type to wave mode were investigated by separating the A o and S o Lamb wave modes obtained from the resultant RTM wavefields.
机译:羊羔波模式对特定缺陷或损坏的实例的敏感性取决于各种因素(例如,由于该波模式而导致的局部应变能量密度)。结果,不同的模式比其他模式更有用,从而损坏检测和量化,取决于损坏类型和位置。例如,该领域的先验工作表明,面外模式可以具有比平板内表面缺陷的面内模式更高的灵敏度。某些数据采集系统的兴奋和损坏成像的相应分辨率也随频率而变化。本作本作的目的是开发一种仔细模式损伤成像技术,使得能够表征损伤类型和尺寸,而不是对未知损坏类型,更高的分辨率成像和可去选择性的敏感性,而不管使用的数据采集系统。将反向时间迁移(RTM)成像算法与数值模拟器 - 三维(3D)弹性动力有限集成技术(EFIT)组合 - 提供Mull模式损伤成像。该方法应用于具有受损各向同性板的两个模拟案例研究。通过分离从所得RTM波场获得的A O和S O LAMB波模式来研究损伤类型对波模式的敏感性。

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