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Sensors Distribution Strategies In Guided Wave Sparse Arrays Based On Defects Scattering Properties

机译:基于缺陷散射特性的引导波稀疏阵列的传感器分布策略

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Most of imaging algorithms used in guided wave arrays share the same assumption that the signal scattered from defects will propagate uniformly in all directions. However, some recent researches on scattering properties of guided wave in defects demonstrate that the scattered signal is un-uniform even for a circular hole. Scattering properties of defects were studied and effects of sensors distribution strategies were presented in this paper. A 3D FE model was employed to study the sensor arrangement method and two basic imaging methods ellipse and hyperbola algorithm was used. Experiment was implemented in a 3mm aluminum plate with piezoelectric elements. Results show that for crack-like defects and through-hole, both ellipse and hyperbola imaging algorithms were valid. The number and position of transducers affect the accuracy of crack imaging. To detecting different kinds of defect the preferable array arrangement should be set according to the scattering characterization of defect.
机译:引导波阵列中使用的大多数成像算法共享与缺陷散射的信号在所有方向上均匀地传播的相同假设。然而,最近关于缺陷引导波的散射特性的一些研究表明,即使对于圆孔,散射信号也是不均匀的。研究了缺陷的散射性能,并在本文中提出了传感器分布策略的影响。采用3D FE模型研究传感器布置方法和两个基本成像方法椭圆和双曲线算法。用压电元件在3mm铝板中实施实验。结果表明,对于裂纹状缺陷和通孔,椭圆和双曲线成像算法都有效。换能器的数量和位置影响裂纹成像的准确性。为了检测不同种类的缺陷,应根据缺陷的散射表征来设置优选的阵列布置。

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