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Applications of non-stationary thermal wave imaging methods for characterisation of fibre-reinforced plastic materials

机译:非平稳热波成像方法在表征纤维增强塑料中的应用

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The active thermal nondestructive testing and evaluation method is a rapidly growing testing procedure for a quick and remote inspection procedure for fibre-reinforced plastics. Conventional modulated lock-in thermography significantly contributed to this field by allowing usage of low peak power controlled stimulations followed by phase based detail extraction procedures. But demand of repetitive experimentation required for depth scanning of the test object limits its applicability for realistic critical applications and demands multi-frequency low power stimulations for better resolution and sensitivity for sub-surface defect detection. Frequency modulated thermal wave imaging and coded excitation thermal wave imaging methods permitting multi-frequency stimulations cater for these needs and facilitate depth scanning of the test object in a single experimentation cycle. Recently introduced three-dimensional pulse compression is an alternative to phase based analysis for these stimulations by providing enhanced defect detection even in noisy environmental and experimental conditions. Defect detection capability and sizing by these non-stationary thermal wave imaging methods are highlighted using the pulse compression approach. The present experimental study has been carried out on a carbon fibre reinforced plastic specimen with flat bottom holes.
机译:主动式热非破坏性测试和评估方法是一种快速发展的测试程序,可用于纤维增强塑料的快速和远程检查程序。常规的调制锁定式热成像技术通过允许使用低峰值功率控制的刺激以及随后的基于相位的细节提取程序,极大地促进了这一领域。但是,对测试对象进行深度扫描所需要的重复实验的要求,限制了其在实际关键应用中的适用性,并且需要多频低功率激励以提供更好的分辨率和对地下缺陷检测的灵敏度。调频热波成像和编码激励热波成像方法允许多频刺激满足这些需求,并有助于在单个实验周期内对测试对象进行深度扫描。通过引入增强的缺陷检测功能,即使在嘈杂的环境和实验条件下,最近引入的三维脉冲压缩也可以替代基于相位的这些刺激分析。使用脉冲压缩方法突出显示了这些非平稳热波成像方法的缺陷检测能力和尺寸。本实验研究是在具有平底孔的碳纤维增强塑料样品上进行的。

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