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A mobile nondestructive testing (NDT) system for fast detection of impact damage in fiber-reinforced plastics (FRP)

机译:用于快速检测纤维增强塑料(FRP)冲击损伤的移动非破坏性测试系统

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Impact damage in fiber-reinforced plastics, such as carbon-fiber-reinforced plastics (CFRP) and glass-fiber-reinforced plastics (GFRP), involves high challenges to nondestructive testing?(NDT). The anisotropic material structure significantly complicates the interpretation of results in conventional testing. Resonant frequency sweep thermography?(RFST) based on local defect resonance combined with well-known ultrasonic thermography enables the fast and simple detection of relevant impact damages. RFST utilizes frequency sweep excitation in the low- and mid-kilohertz range to activate defect resonances with low acoustical power of a few?megawatts. Resonances of defects amplify the acoustic vibration amplitude by more than 1?order of magnitude and lead to a significant enhancement of the corresponding thermal signal. This is based on both crack friction and/or visco-elastic heating and can be detected at the part surface by an infrared camera. The defect detection threshold depends on excitation power and the distance between the defect and the ultrasonic source. For this new NDT approach, a first prototype system in the form of a tripod with an integrated infrared (IR)?camera and ultrasonic excitation was developed. It stands out due to its simple handling and flexible applications. Augmented reality assists the inspector to interpret the results and mark the defect by projecting the evaluated test result onto the part surface. In this article, the first results from a series of impact damages in CFRP of varying impact energies and crack sizes are presented.
机译:纤维增强塑料的冲击损伤,如碳纤维增强塑料(CFRP)和玻璃纤维增​​强塑料(GFRP)涉及非破坏性测试的高挑战?(NDT)。各向异性材料结构显着使对常规测试的结果的解释复杂化。基于局部缺陷共振的共振频率扫描热成像?(RFST)与众所周知的超声波热成像结合,使得能够快速简单地检测相关的影响损坏。 RFST利用低千赫兹范围内的频率扫描激励,以激活具有少数兆瓦的低声音功率的缺陷共振。缺陷的共振将声振动幅度放大超过1?数量级并导致相应的热信号的显着增强。这是基于裂缝摩擦和/或粘弹性加热,并且可以通过红外相机在零件表面处检测。缺陷检测阈值取决于激励功率和缺陷与超声波源之间的距离。对于这种新的NDT方法,开发了一个具有集成红外线(IR)的三脚架形式的第一个原型系统?相机和超声波激发。它由于其简单的处理和灵活的应用而脱颖而出。增强现实有助于检查员解释结果并通过将评估的测试结果投影到零件表面上来标记缺陷。在本文中,提出了一系列冲击能量和裂纹尺寸的一系列冲击损坏的第一个结果。

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