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Ultrasonic phased array on the inner surface of circular stage for detecting the circumferential flaw in a pipe

机译:超声波相控阵列在圆形级的内表面上,用于检测管道中的圆周缺陷

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A nouveau ultrasonic phased array on the inner surface of a circular stage is designed and fabricated for detecting the circumferential flaws inside a pipe effectively. The radiated acoustic field generated by the phased array is calculated with the spatial impulse response method. The influence of the ultrasonic radiated field with different parameters of the focusing phased array is considered, simulated, and studied. In order to determine the phase delay of each element in the phased array, the incident position at the pipe surface of the acoustic beam emitted by each element is derived and calculated by using Snell's law. The imaging experiments of the circumferential flaws in the pipe have been conducted for testing its detection capability with the phased array. It shows a good performance on detecting circumferential flaws in the pipe by the ultrasonic phased array with shape of the circular stage. It is found that the new phased array is superior to the traditional 1-D concave phased array for detecting circumferential flaws in the pipe.
机译:设计和制造在圆形级内表面上的Nouveau超声波相位阵列,用于有效地检测管道内的圆周缺陷。通过空间脉冲响应法计算由分阶段阵列产生的辐射声场。考虑,模拟和研究了超声辐射场与聚焦相控阵的不同参数的影响。为了确定相控阵列中的每个元件的相位延迟,通过使用Snell的定律导出和计算由每个元件发射的声光束的管表面处的入射位置。已经进行了管道中的周向缺陷的成像实验,用于用分阶段阵列测试其检测能力。它在通过圆形级的形状检测管道中的圆周缺陷的圆周缺陷显示出良好的性能。发现新的相控阵优于传统的1-D凹相分阶段阵列,用于检测管道中的周向缺陷。

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