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Repair integrity monitoring of composite aerostructures using thermographic imaging

机译:使用热选成像修复复合空气结构的完整性监测

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摘要

Bonded repair offers significant advantages over mechanically fastened repair schemes as it eliminates local stress concentrations and seals the interface between the mother structure and the patch. However, it is particularly difficult to assess the efficiency of the bonded repair as well as its performance during service loads. Thermography is a particularly attractive technique for the particular application as it is a non-contact, wide field non destructive method. Phase thermography is also offering the advantage of depth discrimination in layered structures such as in typical patch repairs particularly in the case where composites are used. Lock-in thermography offers the additional advantage of on line monitoring of the loaded structure and subsequently the real time evolution of any progressive debonding which may lead to critical failure of the patched repair. In this study composite systems (CFRP plates) with artificially introduced defects (PTFE) were manufactured. The aforementioned methods were employed in order to assess the efficiency of the thermographic technique. The obtained results were compared with typical C-scans.
机译:粘合修复在机械固定的修复方案上提供了显着的优势,因为它消除了局部应力浓度并密封母结构与贴片之间的界面。然而,特别难以评估粘合修复的效率以及在服务负荷期间的性能。热成像是一种特别有吸引力的特定应用,因为它是非接触,宽场非破坏性方法。相热成像还提供层状结构中深度辨别的优点,例如在典型的贴片修复中,特别是在使用复合材料的情况下。 Lock-In Thermoction提供了在加载结构的线路监测的附加优点,随后可以导致修补修复的临界失败的任何渐进剥离的实时演变。在该研究中,制造具有人工引入的缺陷(PTFE)的复合系统(CFRP板)。采用上述方法以评估热成像技术的效率。将得到的结果与典型的C扫描进行比较。

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