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Assessment of uncertainty in damage evaluation by ultrasonic testing of composite structures

机译:通过复合结构的超声测试评估损伤评估中的不确定性

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Ultrasonic testing (UT) is a commonly used non-destructive testing method of composite materials. UT enables determining a geometry of internal damage, its surface area and depth location. However, measurement uncertainty should be taken into consideration when interpreting UT results, which follows from various factors including the test material parameters and selection of the operating parameters, such as the scanning method and applied transducer's characteristics. Moreover, uncertainty in the flaw size assessment is caused by signal or image processing methods applied to the obtained ultrasonic scans, which may return incorrect results. The article presents an overview of factors influencing on the measurement uncertainty depending on variable UT parameters, with reference to appropriate standards, as well as post-processing of the obtained scans. The experimental studies aimed at investigation on the measurement errors were performed on composite specimens made of CFRP with flat-bottom holes of various diameters using the Pulse-Echo and the Phased Array UT methods.
机译:超声波测试(UT)是复合材料常用的非破坏性测试方法。 UT可以确定内部损坏的几何形状,其表面积和深度位置。但是,在解释UT结果时应考虑测量不确定度,这取决于各种因素,包括测试材料参数和操作参数的选择,例如扫描方法和所应用的传感器特性。此外,缺陷尺寸评估的不确定性是由应用于获得的超声扫描的信号或图像处理方法引起的,这可能会返回错误的结果。本文概述了根据可变UT参数影响测量不确定度的因素,并参考了适当的标准,并对获得的扫描结果进行了后处理。旨在研究测量误差的实验研究是使用Pulse-Echo和相控阵UT方法对CFRP制成的带有不同直径的平底孔的复合样品进行的。

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