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Nondestructive inspection in adhesive-bonded joint CFRP using pulsed phase thermography

机译:使用脉冲相热法切割粘合接头CFRP的无损检测

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摘要

Many forms of damages in fiber reinforcement polymer (FRP) composites are difficult to detect because they occurs in subsurface layers of the composites. One challenging need for inspection capabilities is in adhesively bonded joints between composite components, a common location of premature failure in aerospace structures. This paper investigates pulsed phase thermography (PPT) imaging of fatigue damage in these adhesively bonded joints. Simulated defects were created to calibrate parameters for fatigue loading conditions, PPT imaging parameters, and a damage sizing algorithm for carbon fiber reinforced polymer (CFRP) single lap joints. Afterwards, lap joint specimens were fabricated with varying quality of manufacturing. PPT imaging of the pristine specimens revealed defects such as air bubbles, adhesive thickness variations, and weak bonding surface between the laminate and adhesive. Next, fatigue testing was performed and acquired PPT imaging data identified fatigue induced damage prior to final failure cycles. After failure of each sample, those images were confirmed by visual inspections of failure surface.
机译:纤维增强聚合物(FRP)复合材料中的许多形式的损伤难以检测,因为它们发生在复合材料的地下层中。一种具有挑战性的检查能力在复合部件之间的粘接接头中,航空航天结构中的过早失效的常见位置。本文研究了这些粘合接头疲劳损伤的脉冲相热法(PPT)成像。产生模拟缺陷以校准疲劳负载条件,PPT成像参数的参数,PPT成像参数和碳纤维增强聚合物(CFRP)单圈接头的损伤尺寸算法。之后,用不同质量的制造制造搭接标本。 PPT成像原始标本揭示了层压材料和粘合剂之间的气泡,粘合剂厚度变化和弱粘接表面等缺陷。接下来,进行疲劳测试并获得PPT成像数据识别在最终失败循环之前的疲劳诱导损伤。在每个样品发生故障后,通过对故障表面的目视检查确认这些图像。

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