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Defect detection in anisotropic plates based on the instantaneous phase of signals

机译:基于信号瞬时相位的各向异性板中的缺陷检测

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摘要

Anisotropic materials are widely employed in industry and engineering, and efficient nondestructive testing techniques are important to guarantee the structural integrity of the involved parts. A simple technique is proposed to detect defects in anisotropic plates using ultrasonic guided waves and arrays. The technique is based on the application of an objective threshold to a synthetic aperture image obtained from the instantaneous phase (IP) of the emitter-receiver signal combinations. In a previous work the method was evaluated for isotropic materials, and in this paper it is shown that with some considerations the technique can also be applied to anisotropic plates. These considerations, which should be taken into account in beamforming, are (1) group velocity dependence with propagation direction, and (2) elastic focusing, which results in energy concentration in some propagation directions, with the practical consequence that not all aperture signals effectively contribute to the image. When compared with conventional delay-and-sum image beamforming techniques, the proposed IP technique results in significant improvements relative to defect detection and artifacts/dead zone reduction.
机译:各向异性材料广泛用于工业和工程,有效的无损检测技术对于保证所涉及零件的结构完整性非常重要。提出了一种使用超声导波和阵列检测各向异性板中缺陷的简单技术。该技术基于将客观阈值应用于从发射器-接收器信号组合的瞬时相位(IP)获得的合成孔径图像。在以前的工作中,对该方法进行了各向同性材料的评估,并且在本文中表明,出于某些考虑,该技术也可以应用于各向异性板。在波束成形中应考虑的这些考虑因素是:(1)与传播方向有关的组速度,和(2)弹性聚焦,这会导致某些传播方向上的能量集中,其实际结果是并非所有的孔径信号都能有效有助于形象。当与常规的延迟和求和图像波束形成技术进行比较时,所提出的IP技术相对于缺陷检测和伪像/死区减少而言带来了显着改善。

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