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Delamination Size Detection using Time of Flight of Anti-symmetric (A_o) and Mode Converted A_o mode of Guided Lamb Waves

机译:使用反对称(A_o)飞行时间和导引兰姆波模式转换后的A_o模式的分层大小检测

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摘要

In this article an attempt has been made to quantitatively assess the extent of delamination in composite laminates, using time-of-flight of fundamental Lamb wave modes, without recourse to baseline data from a healthy structure. An expression has been derived to determine the delamination size, from group velocities of primary Lamb modes in the sub-laminates and time-of-flight of transmitted A_o signal and mode converted A_o signal, which is generated when A_o mode propagates through a delamination. The effectiveness of the expression, when group velocities of primary Lamb modes in the main laminate were used, has been verified through numerical simulations carried out on a quasi-isotropic glass/epoxy laminate with various delamination interfaces. The effectiveness of the expression has also been verified experimentally, on two GFRP cross-ply laminates of [0/90/0] lay-up with 40 mm and 50 mm delamination sizes, using air coupled ultrasonic transducers. The predicted delamination sizes were found to be in good agreement with the actual delamination sizes. Using the proposed technique absolute identification of delamination is possible. A supplementary equation for determining the minimum length of delamination has also been derived and presented in the article.
机译:在本文中,已尝试使用基本Lamb波模式的飞行时间来定量评估复合材料层压板中的分层程度,而不依赖于健康结构的基线数据。从子层中的主要Lamb模式的组速度以及所传输的A_o信号和模式转换后的A_o信号的飞行时间中得出了确定层离大小的表达式,该信号是在A_o模式传播通过层离时生成的。当在主层压板中使用主要Lamb模式的群速度时,该表达式的有效性已通过对具有各种分层界面的准各向同性玻璃/环氧树脂层压板进行的数值模拟得到了验证。使用空气耦合超声换能器,在两个[0/90/0]层叠的GFRP叠层层压板(分层厚度分别为40 mm和50 mm)上,也已通过实验验证了这种表达的有效性。发现预测的分层大小与实际分层大小非常一致。使用所提出的技术,绝对识别分层是可能的。本文还得出了确定最小分层长度的补充公式。

著录项

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  • 作者单位

    Centre for Nondestructive Evaluation and Department of Mechanical Engineering Indian Institute of Technology Madras, Chennai - 600 036, India Composite Research Center, R & D E (E), Dighi, Pune - 411 015, India;

    rnCentre for Nondestructive Evaluation and Department of Mechanical Engineering Indian Institute of Technology Madras, Chennai - 600 036, India;

    rnCentre for Nondestructive Evaluation and Department of Mechanical Engineering Indian Institute of Technology Madras, Chennai - 600 036, India;

    Composite Research Center, R & D E (E), Dighi, Pune - 411 015, India;

    rnCentre for Nondestructive Evaluation and Department of Mechanical Engineering Indian Institute of Technology Madras, Chennai - 600 036, India;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    lamb wave; delamination; time of flight; air-coupled ultrasonic transducers;

    机译:羊肉波分层飞行时间;空气耦合超声换能器;

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