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Non-Destructive Inspection of Adhesively Bonded Joints using Amplitude Modulated Thermography

机译:调幅热成像技术对胶接接头的无损检测

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摘要

The goal of this work is to design thermal waves specifically for pulsed-phase infrared thermography (PPT) of bonded joints and to test their effectiveness on adhesive lap joints in carbon-fiber reinforced polymers structures. The method was applied to both single and double lap joint specimens to test different defect depths and multiple lap joint interfaces. An optimal thermal wave was designed for each specimen type based on the blind frequency information obtained from square pulse thermal wave excitation of the lap joint specimens. Modifications to the optimal thermal wave were then implemented based on the physical limitations of the lamp systems and different threshold settings for the blind frequency calculation. Thermal input waves based on the linear combination of discrete frequency waves were also implemented. The discrete frequency waves improved the defect image contrast in both the single and double lap joint specimens, while the optimal thermal input wave had the opposite effect and instead highlighted surface features. The difference in performance between the two thermal input waves is presumed to be due to the ability to separate frequency components in the transformation of data and not due to a critical thermal energy input threshold.
机译:这项工作的目的是设计专门用于粘结接头的脉冲相红外热成像(PPT)的热波,并测试其在碳纤维增强聚合物结构中的搭接搭接接头上的有效性。该方法适用于单搭接和双搭接试样,以测试不同的缺陷深度和多个搭接界面。根据从搭接接头样品的方脉冲热波激发获得的盲频信息,为每种样品类型设计最佳热波。然后,根据灯系统的物理限制和盲频计算的不同阈值设置,对最佳热波进行修改。还基于离散频率波的线性组合实现了热输入波。离散的频率波改善了单和双搭接接头样品中的缺陷图像对比度,而最佳的热输入波则产生相反的效果,而突出了表面特征。推测两个热输入波之间的性能差异是由于在数据转换中分离频率分量的能力,而不是由于临界的热能输入阈值。

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