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Thermal NDE of thick GRP panels by means of a Pulse Modulated Lock-In Thermography technique

机译:借助脉冲调制锁定热成像技术对厚玻璃纤维板的热NDE

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This work describes the development and implementation of an infrared thermal NDE procedure for the evaluation of subsurface defects. The approach is called Pulse-Modulated Lock-In Thermography (PMLT) and is based on the analysis of the frequency response of the measured temperature and comparison with the carrier frequencies launched by the external heat delivering source. The heat deposited on the object is in particular modulated as a train of square waves. This is easily achieved by periodically shuttering the heat source. The temperature is then sampled throughout the deposition of a few square waves. A lock-in algorithm is then implemented able to selectively filter out components at the main carrier frequencies of the heating signal and evaluate the phase information. Defected areas at different depths can be marked based on phase contrast, by using data from a single experiment as in Pulsed-Phase Thermography. An artificially defected thick GRP panel typical of naval monolithic hull structures, is investigated to validate the proposed technique. Experimental data have confirmed the potentials of PMLT as a flexible IR NDT approach, and its ability to be implemented by means of low cost heating and IR equipments.
机译:这项工作描述了用于评估地下缺陷的红外热NDE程序的开发和实施。该方法称为脉冲调制锁定热成像(PMLT),它基于对测得温度的频率响应的分析,并与外部传热源发射的载频进行比较。沉积在物体上的热量尤其被调制成一列方波。这可以通过定期关闭热源来轻松实现。然后在几个方波的整个沉积过程中对温度进行采样。然后实施锁定算法,该算法能够选择性地滤除加热信号主载波频率上的分量并评估相位信息。如脉冲相热成像法一样,通过使用来自单个实验的数据,可以根据相差标记不同深度的缺陷区域。海军缺陷整体船体结构的典型人为缺陷的厚玻璃钢面板进行了研究,以验证所提出的技术。实验数据已经证实了PMLT作为一种灵活的IR NDT方法的潜力,以及通过低成本的加热和IR设备实现该功能的能力。

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