Grondel Sébastien, Paget Christophe, Delebarre Christophe, Assaad Jamal, Levin Klas
IEMN, UMR CNRS 9929, Département OAE, Université de Valenciennes et du Hainaut Cambresis, Le Mont Houy, France.
J Acoust Soc Am. 2002 Jul;112(1):84-90. doi: 10.1121/1.1481062.
This work concerned a technique for a health monitoring system based on the generation and sensing of Lamb waves in composite structures by thin surface-bonded piezoceramic transducers. The objective was to develop transducers that are adapted for the damage detection in orthotropic composites. The key problem with the investigated Lamb waves was to select a mode to be sensitive to the damage. A hybrid modeling technique was therefore used to conceive transducers that were adapted to achieve such a feature. This modeling technique enabled studying the influence of the transducer characteristics on the Lamb waves propagating in orthotropic plates. It was demonstrated that a Lamb mode could be generated dominantly to other modes by using a multi-element transducer. The effectiveness of this technique was successfully verified experimentally on composite plates. It was shown that the dominant Lamb mode, obtained by use of dual-element transducers, was an appropriate mode for successfully detecting a damage in composites.
这项工作涉及一种基于薄表面粘结压电陶瓷换能器在复合材料结构中产生和传感兰姆波的健康监测系统技术。目标是开发适用于正交各向异性复合材料损伤检测的换能器。所研究的兰姆波的关键问题是选择一种对损伤敏感的模式。因此,采用了一种混合建模技术来设计能够实现这一特性的换能器。这种建模技术能够研究换能器特性对在正交各向异性板中传播的兰姆波的影响。结果表明,通过使用多元换能器,可以使一种兰姆模式相对于其他模式占主导地位。该技术的有效性在复合材料板上通过实验成功得到验证。结果表明,使用双元换能器获得的主导兰姆模式是成功检测复合材料损伤的合适模式。