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Experimental analysis of surface detection methods for two-medium imaging with a linear ultrasonic array

机译:用线性超声阵列双介质成像的表面检测方法实验分析

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摘要

In ultrasonic nondestructive testing, when using an ultrasonic linear array transducer for imaging objects with nonplanar surfaces, a coupling medium must be used. To compensate for the refraction at the coupler-object interface, its shape must be known. Two methods for surface detection of convex objects in immersion are proposed, using the same linear array transducer for surface detection and for SAFT imaging. One is based on imaging technique and the other is based on the time-of-flight of the echoes on the captured ultrasonic signals. The accuracy and performance of the two methods are compared experimentally with an existing fast method called pitch-catch. The proposed methods produced smaller errors in part of the tested configurations, with a slower performance compared with the pitch-catch method. After the surface detection, in the SAFT image formation phase, the delays are calculated through a simple and fast proposed technique to determine the fastest paths, following the Fermat's principle. Images are formed for nine distinct array element groups, and then combined using the effective aperture technique. The results show that the developed methods allow interactive two-medium image formation on a general-purpose CPU.
机译:在超声波非破坏性测试中,当使用超声线性阵列换能器与非平面表面进行成像对象时,必须使用耦合介质。为了补偿耦合器对象界面处的折射,必须知道其形状。提出了两种用于浸没中凸起物体的表面检测方法,使用相同的线性阵列换能器进行表面检测和SAFT成像。一个是基于成像技术,另一个基于捕获超声信号上的回波的飞行时间。通过一种称为俯仰捕获的现有快速方法,实验比较这两种方法的准确性和性能。所提出的方法在一部分测试的配置中产生较小的误差,与距离捕获方法相比,性能较慢。在表面检测之后,在SAFT图像形成阶段,通过简单而快速提出的技术来计算延迟,以确定Fermat原理。图像形成为九个不同的阵列元件组,然后使用有效孔径技术组合。结果表明,开发方法允许在通用CPU上允许交互式的双介质图像形成。

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