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Comparative study of microlaser excitation thermography and microultrasonic excitation thermography on submillimeter porosity in carbon fiber reinforced polymer composites

机译:碳纤维增强聚合物复合材料中微激光激发热成像和微超声激发热成像对亚毫米孔隙率的比较研究

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摘要

Stitching is used to reduce incomplete infusion of T-joint core (dry-core) and reinforce T-joint structure. However, it may cause new types of flaws, especially submillimeter flaws. Thermographic approaches including microvibrothermography, microlaser line thermography, and microlaser spot thermography on the basis of pulsed and lock-in techniques were proposed. These techniques are used to detect the submillimeter porosities in a stitched T-joint carbon fiber reinforced polymer composite specimen. X-ray microcomputed tomography was used to validate the thermographic results. Finally an experimental comparison of microlaser excitation thermography and microultrasonic excitation thermography was conducted.
机译:缝合用于减少T型接头芯(干芯)的不完全浸入并增强T型接头结构。但是,它可能会引起新型缺陷,尤其是亚毫米级缺陷。提出了基于脉冲和锁定技术的热成像方法,包括微振动热成像,微激光线热成像和微激光点热成像。这些技术用于检测缝合的T型接头碳纤维增强聚合物复合材料样品中的亚毫米孔隙率。 X射线计算机断层扫描用于验证热成像结果。最后进行了微激光激发热成像和微超声激发热成像的实验比较。

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