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Research on Ultrasonic Imaging for Arbitrarily Shaped Interface Based on Virtual Source

机译:基于虚拟源的任意形状接口超声成像研究

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When the components with arbitrarily shaped are detected by the ultrasonic imaging test, the coupling medium such as immersion or wedge is unavoidable used for ensuring the coupling condition. In this state ultrasonic wave will propagate in the arbitrarily shaped two-media interface between coupling medium and component. For the traditional ultrasonic imaging method which the sound velocity is considered constant, the above condition would cause the wrong position of defects in the image. To overcome the problem, a method combining virtual source (VS) and synthetic aperture focusing technique (SAFT) was applied. Firstly, the sound propagation time of the first interface echo of each elements were measured. Then a series of virtual sources at the two-media interface were created by the time of flight (TOF) of two consecutive elements. Secondly, in virtue of the virtual sources, the two-segment sound propagation path from emitting elements to virtual sources and from here to focus points were respectively calculated. Last each point of the imaging region was focused by the delay and sum process of SAFT. The result showed the defect location of component were displayed accurately in the VS-SAFT image.
机译:当超声成像测试检测具有任意形状的部件时,用于确保耦合条件的耦合介质是不可避免的。在该状态下,超声波将在耦合介质和组件之间的任意形状的双媒体接口中传播。对于声速被认为是恒定的传统超声成像方法,上述条件会导致图像中的缺陷的错误位置。为了克服问题,应用了组合虚拟源(VS)和合成孔径聚焦技术(SAFT)的方法。首先,测量每个元件的第一接口回波的声音传播时间。然后,通过两个连续元素的飞行时间(TOF)创建了一系列虚拟源。其次,借助于虚拟源,分别计算了从发射元件到虚拟源的两个段声音传播路径和从这里到聚焦点。上次成像区域的每个点被Saft的延迟和和处理聚焦。结果表明,在VS-SAFT图像中精确地显示了部件的缺陷位置。

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