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Toward Creating a Portable Impedance-Based Nondestructive Testing Method for Debonding Damage Detection of Composite Structures

机译:用于创建基于便携式阻抗的非破坏性测试方法,用于复合结构的剥离损伤检测

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Debonding detection of composite structures is a vital task as such damage weakens the structure leading to a failure. As adhesive bonding is a more preferable choice over the conventional mechanical fastening method, detecting debonding as early as possible could minimize the overall maintenance costs. For this reason, a vast amount of research in the nondestructive testing field is being conducted as we speak. However, most of the methods may require well-trained experts or heavy equipment. In this study, the piezoelectric (PZT) material-based method known as the electromechanical impedance technique is investigated to seek the possibility of making the technique very cheap and portable by temporarily attaching the sensor. Furthermore, ANSYS simulation studies using smaller PZT patches as small as 0.1 mm × 0.1 mm are simulated to investigate the impedance signatures acquired from the simulations. The results show the possibility of using smaller PZT patches compared to the conventional PZT sizes of 10 mm × 10 mm for a successful damage identification process.
机译:复合结构的剥离检测是一个重要的任务,因为这种伤害削弱了导致失败的结构。由于粘合剂粘合是在传统的机械紧固方法上更优选的选择,尽早检测剥离可以最小化整体维护成本。出于这个原因,在我们说话时正在开展非破坏性测试领域的大量研究。然而,大多数方法可能需要训练有素的专家或重型设备。在该研究中,研究了称为机电阻抗技术的压电(PZT)材料的方法,以寻求使技术使得通过临时附着传感器的技术和便携式的可能性。此外,模拟使用小于0.1mm×0.1mm小于0.1mm×0.1mm的较小PZT贴片的ANSYS模拟研究,以研究从模拟中获取的阻抗签名。结果表明,与传统的PZT尺寸相比,使用10mm×10mm的传统PZT尺寸,以成功损坏识别过程。

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