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Finite difference time domain simulation of the time-of-flight diffraction technique for imaging and sizing cracks

机译:飞行时间衍射技术对裂纹的成像和尺寸确定的时域有限差分模拟

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摘要

This paper reports on the numerical simulations of the Time-of-Flight Diffraction (TOFD) technique to image and size cracks in plate specimens, using the Finite Difference Time Domain (FDTD) method for modelling the ultrasonic wave propagation. Experiments were conducted to validate modelling results for pitch-catch simulations of transducers on samples with calibrated defects of different configurations and sizes in aluminium plate sections. Defects were imaged and sized taking into consideration the velocity of the wave and the times of arrival of the diffracted echoes. Experiments were carried out using a 5 MHz transmitter-receiver transducer pair mounted on suitable wedges to generate a beam of 50° refracted angle within the specimen to image and size cracks and hence validate the simulations. A front/back-wall correction algorithm coupled with a synthetic aperture focusing of the TOFD signals was also demonstrated for improved sizing of defects.
机译:本文使用有限差分时域(FDTD)方法对超声波传播进行建模,对飞行时间衍射(TOFD)技术对板样品中的图像进行成像和确定尺寸的数值模拟进行了报道。进行实验以验证传感器在铝板截面上具有不同配置和尺寸的校准缺陷的样品上的音高-捕捉模拟的建模结果。考虑到波速和衍射回波的到达时间,对缺陷成像并确定大小。使用安装在合适楔形物上的5 MHz发射器-接收器换能器对进行实验,以在样品内产生50°折射角的光束以成像并确定裂纹的大小,从而验证仿真结果。还展示了前/后壁校正算法以及TOFD信号的合成孔径聚焦,可以改善缺陷的尺寸。

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