用于复合材料大面积皱纹快速检测和分类的超声波指标

R. A. Smith, R. B. Tayong, L. J. Nelson, M. Mienczakowski, P. D. Wilcox
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引用次数: 0

摘要

由于复合材料具有很高的强度重量比,目前已被用于许多高应力应用领域,特别是在要求重量轻的情况下。在这种情况下,平面外皱纹缺陷造成的机械强度下降会带来严重后果,因此需要在生产过程中快速检测出任何此类皱纹。遗憾的是,目前用于生产质量控制的超声波检测技术灵敏度不够,无法在相干结构噪声变化之上检测到这些褶皱。本文利用多层结构的特点--层间共振,生成了两个新的指标,用于检测和分类平面外褶皱,这是由于层间间距的扰动造成的。使用瞬时频率(即脉冲回波超声响应中的相位变化率)可以测量结构上每个位置的皱纹。所提出的用于检测和分类皱纹的两个新指标是平均间距和间距差,它们可在获取波形时实时应用于每个波形。通过使用分析模型预测结构的超声波响应,可以了解这些指标将如何受到各种皱纹类型的影响,以及它们如何不仅能检测到皱纹,还能对皱纹类型进行分类,并提供大致的严重程度指示。我们考虑了三种主要的皱纹类型:靠近结构中平面的典型皱纹、靠近结构背面的树脂隆起形成的背面皱纹,以及在结构主体中几个层完全折叠的折叠皱纹。模拟和实验结果都证明了这些指标对各种类型结构的有效性,包括碳纤维和混合碳/玻璃纤维复合材料,以及各种层厚和皱纹类型。
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Ultrasonic metrics for large-area rapid wrinkle detection and classification in composites
Due to their high strength-to-weight ratio, composite materials are now in use in many high-stress applications, particularly where light weight is also a requirement. In these situations, the detrimental knock-down in mechanical strength due to an out-of-plane wrinkle defect can have serious consequences and is the reason for a requirement to rapidly detect any such wrinkles at manufacture. Unfortunately, current ultrasonic inspection techniques used for quality control at manufacture are not sensitive enough to detect these wrinkles above coherent structural noise variations. This paper exploits the ply resonance that is a characteristic of multi-layer structures to generate two new metrics for both detection and classification of out-of-plane wrinkles, due to their perturbations of the ply spacing. These can be measured at every location on a structure using the instantaneous frequency, which is the rate of change of phase in the pulse-echo ultrasonic response. The proposed two new metrics for detection and classification of wrinkles are mean spacing and spacing difference and they can be applied to each waveform in real time, as it is acquired. Use of an analytical model to predict the ultrasonic response of the structure has allowed an understanding of how these metrics will be affected by various wrinkle types and how they can not only detect wrinkles but also classify the type of wrinkle and provide an approximate indication of severity. Three main types of wrinkle are considered: classic wrinkles near the mid-plane of a structure, back-surface wrinkles formed from a resin bulge near the back of a structure and folded wrinkles where several plies can be folded over completely in the bulk of the structure. Both simulations and experimental results demonstrate the effectiveness of these metrics on various types of structure, including carbon-fibre and hybrid carbon/glass-fibre composites with a range of ply thicknesses and wrinkle types.
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