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Errors and uncertainties in the ultrasonic pulse-echo reflectometry method for measuring acoustic impedance

机译:超声脉冲回波反射法测量声阻抗的误差和不确定性

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Ultrasonic pulse-echo reflectometry provides a convenient method to measure the acoustic impedance of a layer of unknown material bonded to a substrate of another material whose acoustic properties are known. The amplitudes of echoes from the interface are used to calculate the interface reflection coefficient and, from this and a knowledge of the properties of the substrate material, the unknown impedance is obtained. The technique has potential for assessment of adhesive cure and measurement of mechanical moduli. The calculation is poorly conditioned in that small errors in raw echo data can result in unacceptably large errors in the estimate of the required impedance. This paper gives an analysis which demonstrates how bias and variance errors in raw data lead to bias and variance errors in the calculated reflection coefficient and how these lead to errors in impedance estimation which can be very much greater and which depend on the value of the coefficient of reflection at the interface. Experimental results are given which verify the analytical predictions of the error generation process. The effects of interface conditions such as transducer coupling film and paint coatings are considered quantitatively by a simulation of the wave system. The effects of substrate surface roughness are considered briefly in a series of experiments.
机译:超声脉冲回波反射测量法提供了一种方便的方法来测量与另一种已知声学特性的材料的基底粘结的未知材料层的声阻抗。来自界面的回波幅度用于计算界面反射系数,并据此和对基板材料特性的了解获得未知阻抗。该技术具有评估粘合剂固化和测量机械模量的潜力。该计算的条件很差,因为原始回波数据中的小误差会导致所需阻抗的估计中出现不可接受的大误差。本文进行了一项分析,该分析演示了原始数据中的偏差和方差误差如何导致计算出的反射系数中的偏差和方差误差,以及这些误差如何导致阻抗估计中的误差,误差可能更大得多,并且取决于系数的值界面反射。给出的实验结果验证了错误生成过程的分析预测。界面条件的影响,例如换能器耦合膜和油漆涂层,是通过模拟波浪系统来定量考虑的。在一系列实验中简要考虑了基材表面粗糙度的影响。

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