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Evaluation of Different Techniques of Active Thermography for Quantification of Artificial Defects in Fiber-Reinforced Composites Using Thermal and Phase Contrast Data Analysis

机译:使用热和相位对比度数据分析评估纤维增强复合材料中人工缺陷的不同技术

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摘要

For assuring the safety and reliability of components and constructions in energy applications made of fiber-reinforced polymers (e.g., blades of wind turbines and tidal power plants, engine chassis, flexible oil and gas pipelines) innovative non-destructive testing methods are required. Within the European project VITCEA complementary methods (shearography, microwave, ultrasonics and thermography) have been further developed and validated. Together with partners from the industry, test specimens have been constructed and selected on-site containing different artificial and natural defect artefacts. As base materials, carbon and glass fibers in different orientations and layering embedded in different matrix materials (epoxy, polyamide) have been considered. In this contribution, the validation of flash and lock-in thermography to these testing problems is presented. Data analysis is based on thermal contrasts and phase evaluation techniques. Experimental data are compared to analytical and numerical models. Among others, the influence of two different types of artificial defects (flat bottom holes and delaminations) with varying diameters and depths and of two different materials (CFRP and GFRP) with unidirectional and quasi-isotropic fiber alignment is discussed.
机译:为了确保由纤维增强聚合物制成的能量应用中的部件和结构的安全性和可靠性(例如,风力涡轮机和潮汐发电厂,发动机底盘,柔性油和天然气管道)是创新的非破坏性测试方法。在欧洲项目中,已经进一步开发并验证了vitcea互补方法(Shearography,微波,超声波和热成像)。与业界的合作伙伴一起,已经构建并选择了包含不同的人工和自然缺陷人工制品的现场。作为基材,已经考虑了嵌入不同基质材料(环氧树脂,聚酰胺)的不同取向和层状的碳和玻璃纤维。在这一贡献中,提出了闪光和锁定热成像的验证。数据分析基于热对比度和相位评估技术。将实验数据与分析和数值模型进行比较。其中,讨论了两种不同类型的人工缺陷(平底孔和分层)具有不同直径和深度和两种不同材料(CFRP和GFRP)的不同类型的人工缺陷(平底孔和分层),其具有单向和准各向同性纤维对准。

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