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首页> 外文期刊>Journal of Nondestructive Evaluation >Broadband Calibration of Acoustic Emission and Ultrasonic Sensors from Generalized Ray Theory and Finite Element Models
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Broadband Calibration of Acoustic Emission and Ultrasonic Sensors from Generalized Ray Theory and Finite Element Models

机译:广义射线理论和有限元模型的声发射和超声传感器的宽带校准

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摘要

This paper describes a calibration method for acoustic emission and ultrasonic sensors that is effective from 1 kHz to 1 MHz. The method combines generalized ray theory and finite element analysis to model wave propagation at higher and lower frequencies, respectively. A ball impact is used as a calibration source, a thick aluminum plate is used as the test block, and hot glue is used as the couplant. We demonstrate this method on five commercial piezoelectric sensors: Physical Acoustics (PAC) R15a, PACWSa, Panametrics V101, Panametrics V103, and Valpey-Fisher Pinducer. Our calibration results show that reflections and other wave phases can be more clearly identified with the less-resonant Panametrics sensors. The PAC sensors have the greatest sensitivity and are able to detect surface normal displacements at least down to 1 pm amplitude in the 100s of kHz frequency band. Aperture effect is minimized by the small size of the Pinducer. Our method focuses on the amplitude response of the sensors (phase is ignored) and extends the calibration to a frequency band that is lower than typical analyses. Low frequency information is useful for determining the seismic moment of a seismic source (analogous to the magnitude of an earthquake) and can increase the amount of information acquired in a single recording.
机译:本文介绍了对1 kHz至1MHz有效的声发射和超声波传感器的校准方法。该方法将广义射线理论和有限元分析组合在较高且较低频率下模型波传播。球撞击用作校准源,厚铝板用作试验块,使用热胶作为耦合剂。我们在五个商用压电传感器上展示了这种方法:物理声学(PAC)R15A,PACWSA,Panametrics V101,Panametrics V103和Valpey-Fisher Pinducer。我们的校准结果表明,可以更清楚地识别反射和其他波相用较少共振的巴法蚀刻传感器。 PAC传感器具有最大的灵敏度,并且能够在kHz频带100S中检测至少下降到1PM幅度的表面正常位移。孔径尺寸的尺寸效果最小化。我们的方法专注于传感器的幅度响应(逐渐忽略),并将校准扩展到低于典型分析的频带。低频信息可用于确定地震源的地震时刻(类似于地震的大小)并且可以增加在单个记录中获取的信息量。

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