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Damage investigation in CFRP composites using full-field measurement techniques: combination of digital image stereo-correlation, infrared thermography and X-ray tomography

机译:使用全场测量技术研究CFRP复合材料的损伤:数字图像立体相关,红外热成像和X射线断层扫描的结合

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摘要

The present work is devoted to damaging process in carbon–fiber reinforced laminated composites. An original experimental approach combining three optical measurement techniques is presented. Image stereo-correlation and infrared thermography, that respectively provide the kinematic and thermal fields on the surface of the composites, are used in live recording during axis and off-axis tensile tests. Special attention is paid to simultaneously conduct these two techniques while avoiding their respective influence. On the other hand, X-ray tomography allows a post-failure analysis of the degradation patterns within the laminates volume. All these techniques are non-destructive (without contact) and offer an interesting full-field investigation of the material response. Their combination allows a coupled analysis of different demonstrations of same degradation mechanisms. For instance, thermal events and densimetric fields show a random location of damage in the early stages of testing. The influence of the material initial anisotropy on damage growth, localization and failure mode can also be clearly put in evidence through various data. In addition to such characterization, this study illustrates at the same time the capabilities of the different full-field techniques and the damage features they can best capture respectively.
机译:目前的工作致力于碳纤维增强层压复合材料的破坏过程。提出了结合三种光学测量技术的原始实验方法。分别在复合材料表面提供运动场和热场的图像立体相关和红外热成像技术,在轴和离轴拉伸测试期间用于实时记录。要特别注意同时进行这两种技术,同时避免它们各自的影响。另一方面,X射线断层摄影术可以对层压板体积内的降解模式进行失效后分析。所有这些技术都是非破坏性的(无接触),并提供了有趣的材料响应全场调查。它们的组合允许对相同降解机制的不同演示进行耦合分析。例如,热事件和密度场在测试的早期阶段显示损坏的随机位置。材料的初始各向异性对损伤增长,局部化和破坏模式的影响也可以通过各种数据清楚地证明。除了这种特征之外,这项研究还同时说明了不同全场技术的功能以及它们分别可以最好地捕获的损伤特征。

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