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NDE of adhesive joints and riveted structures with lock-in thermography methods

机译:具有锁定热成像方法的粘合接头和铆接结构的NDE

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Elastic waves sent into the component propagate inside the sample until they are converted into heat. A defect causes locally enhanced losses and consequently selective heating up. Therefore amplitude modulation of the injected elastic wave turns a defect into a thermal wave transmitter whose signal is detected at the surface by lock-in thermography synchronized to the frequency of amplitude modulation. This way ultrasound lock-in thermography allows for selective defect detection which enhances the probability of defect detection in the presence of complicated intact structures. Measurements were performed on various kinds of mechanical joints. The results of our feasibility study indicate that both optical (OLT) and ultrasound exited lock-in thermography (ULT) are reliable tools for the rapid identification of damaged riveted structures. We demonstrate that one can locate a screw joint or a riveting which provide only a reduced stress. Investigations on airplane components were performed which confirmed the applicability of lockin thermography for remote maintenance inspection within a few minutes.
机译:弹性波发送到样本内的组分繁殖,直到它们被转化为热能。的缺陷引起局部增强的损失,并因此选择性升温。所注入的弹性波。因此调幅变成缺陷到热波发送其信号通过锁相热成像同步到振幅调制的频率在表面被检测到。这样超声锁相热成像可以用于选择性缺陷检测这提高缺陷检测的在复杂完整结构的存在的概率。测量在各种机械接头的执行。我们的可行性研究的结果表明,这两种光(OLT)和超声退出锁相热(ULT)是损坏铆接结构的快速识别可靠的工具。我们证明,一个可以定位螺钉接头或铆接仅提供一个减小的应力。上飞机部件调查进行证实在几分钟内洛用于远程维护检查热成像的适用性。

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