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A hybrid non-contact ultrasonic system for sensing bond quality in tow-placed thermoplastic composites

机译:混合非接触超声系统,用于感测丝束放置的热塑性复合材料的粘结质量

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摘要

A novel non-contact nondestructive evaluation system is proposed for sensing bond quality in tow-placed graphite/PEEK thermoplastic composites. The inspection tool consists of a hybrid ultrasonic system which employs laser generation of narrow-band surface waves with fiberoptic light delivery, and signal detection by air-coupled transduction. The fiberoptic link enhances flexibility and remoteness of the laser source from the test piece. The system output is not influenced by the poor light reflectivity of the test graphite/PEEK material. Signal narrow-banding by light spatial modulation enhances the measurement sensitivity and avoids detrimental material ablation while allowing control of the surface wave penetration depth. The theory of the laser generation of narrow-band surface waves is reviewed and the generation efficiency as a function of the wave propagation direction in the composite is discussed. The inspection capabilities of the proposed system are demonstrated by successful detection of a series of subsurface defects in a tow-placed unidirectional AS-4/APC-2 cylinder provided by Boeing Commercial Aircraft. The defects examined include regions of poor consolidation, inter-laminar linear porosity (voids elongated along the fibers with 1.5% volume fraction), and delamination or interlaminar weakness. The ultrasonic inspection unit is non-contact, flexible, light-weight and allows for high inspection rates These characteristics, coupled with a large signal-to-noise ratio of the measurements, show promises for the use of the proposed sensor in on-line control of the thermoplastic tow-placement process with in situ consolidation.
机译:提出了一种新颖的非接触式非破坏性评估系统,用于感测丝束放置的石墨/ PEEK热塑性复合材料的粘结质量。该检查工具由混合超声系统组成,该系统采用激光产生的窄带表面波并通过光纤传输光,并通过空气耦合转导进行信号检测。光纤链路增强了激光源与测试件之间的灵活性和距离。系统输出不受测试石墨/ PEEK材料不良的光反射率的影响。通过光空间调制实现的窄带信号增强了测量灵敏度,避免了有害的材料烧蚀,同时还可以控制表面波的穿透深度。回顾了窄带表面波激光产生的理论,并讨论了复合波中产生效率与波传播方向的关系。通过成功检测到由波音商用飞机公司提供的拖曳式单向AS-4 / APC-2气缸中的一系列地下缺陷,证明了所提出系统的检查能力。检查的缺陷包括固结不良,层间线性孔隙(空隙沿纤维以1.5%的体积分数伸长),分层或层间无力的区域。超声波检测单元是非接触式的,柔性的,重量轻的,并具有很高的检测率。这些特性,再加上较大的测量信噪比,显示了在线使用建议的传感器的希望。原位固结控制热塑性丝束的放置过程。

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