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Characterization of Delaminations and Transverse Matrix Cracks in Composite Laminates Using Multiple-Angle Ultrasonic Inspection

机译:多角度超声检测表征复合材料层合板中的分层和横向基体裂纹

摘要

Delaminations and transverse matrix cracks often appear concurrently in composite laminates. Normal-incidence ultrasound is excellent at detecting delaminations, but is not optimum for matrix cracks. Non-normal incidence, or polar backscattering, has been shown to optimally detect matrix cracks oriented perpendicular to the ultrasonic plane of incidence. In this work, a series of six composite laminates containing slots were loaded in tension to achieve various levels of delamination and ply cracking. Ultrasonic backscattering was measured over a range of incident polar and azimuthal angles, in order to characterize the relative degree of damage of the two types. Sweptpolar- angle measurements were taken with a curved phased array, as a step toward an array-based approach to simultaneous measurement of combined flaws.
机译:复合层压板中经常同时出现分层和横向基体裂纹。垂直入射超声波在检测分层方面非常出色,但对于基体裂纹不是最佳选择。非垂直入射或极性反向散射已被证明可以最佳地检测垂直于超声波入射平面取向的基体裂纹。在这项工作中,一系列六个包含缝隙的复合层压板被拉伸加载,以实现各种水平的分层和层裂。为了表征两种类型的相对损伤程度,在入射极性和方位角的入射角范围内测量了超声反向散射。使用弯曲相控阵进行扫极角测量,这是朝着同时测量组合缺陷的基于阵列的方法迈出的一步。

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