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Lamb Wave-based BVID Imaging for a Curved Composite Sandwich Panel

机译:基于LAMP挥舞的BVID成像,用于弯曲复合夹层板

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Composite sandwich structures, consisting of a low density core sandwiched between two laminated facesheets, have been widely used in various aerospace structures. A new Lamb wave-based imaging condition, which will be referred to as the inverse incident wave energy (IIWE) imaging criterion, is proposed in this paper to resolve the situations where the incident wave energy weakly penetrates into the damaged area in the upper facesheet region. Current imaging conditions by analyzing wavefield reconstructed from laser Doppler vibrometer (LDV) scanning have been proven to be adequate for imaging damage in layered composite laminates. In this research, those current imaging conditions were applied and compared in the composite foam structures for barely visible impact damage (BVID). A piezoelectric wafer was used to excite Lamb waves into the structure and a LDV was used to scan the potential damaged areas in the upper facesheet of the panel. A BVID site in a curved composite sandwich foam aileron was inspected using various wavefield analysis methods and the damage images were compared with C-scan images. A few imaging conditions that are effective for this BVID site are identified when the incident waves have difficulties penetrating into the damaged region.
机译:由夹在两个层压面板之间的低密度芯中的复合夹层结构,已广泛用于各种航空航天结构。在本文中提出了一种新的羊羔波的成像条件,其将被称为逆入射波能量(IIWe)成像标准,以解决入射波能量弱渗入上方面板中受损区域的情况地区。通过分析来自激光多普勒振动器(LDV)扫描的波场(LDV)扫描的波场的电流成像条件已经被证明是足以在层状复合层压板中的成像损坏。在该研究中,应用这些目前的成像条件并在复合泡沫结构中进行比较,用于几乎可见的冲击损伤(BVID)。使用压电晶片将羊羔波激发到结构中,并且使用LDV来扫描面板的上部面板中的电位受损区域。使用各种波场分析方法检查弯曲复合夹层泡沫泡沫泡沫的BVID位点,并将损坏图像与C扫描图像进行比较。当入射波难以渗透到受损区域时,识别出对该BVID位点有效的一些成像条件。

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