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Flash Thermography to Evaluate Porosity in Carbon Fiber Reinforced Polymer (CFRPs)

机译:快速热成像技术评估碳纤维增强聚合物(CFRP)中的孔隙率

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It is a fact that the presence of porosity in composites has detrimental effects on their mechanical properties. Then, due to the high probability of void formation during manufacturing processes, it is necessary to have the availability of non-destructive evaluation techniques, which may be able to discover the presence and the distribution of porosity in the final parts. In recent years, flash thermography has emerged as the most valuable method, but it is still not adequately enclosed in the industrial enterprise. The main reason of this is the lack of sufficient quantitative data for a full validation of such a technique. The intention of the present work is to supply an overview on the current state-of-the-art regarding the use of flash thermography to evaluate the porosity percentage in fiber reinforced composite materials and to present the latest results, which are gathered by the authors, on porous carbon fiber reinforced polymer laminates. To this end, several coupons of two different stacking sequences and including a different amount of porosity are fabricated and inspected with both non-destructive and destructive testing techniques. Data coming from non-destructive testing with either flash thermography or ultrasonics are plotted against the porosity percentage, which was previously estimated with the volumetric method. The new obtained results are a witness to the efficacy of flash thermography. Some key points that need further consideration are also highlighted.
机译:事实上,复合材料中孔隙的存在对其机械性能有不利影响。然后,由于在制造过程中形成空隙的可能性很高,因此有必要提供无损评估技术,该技术可能能够发现最终零件中孔隙的存在和分布。近年来,闪速热成像已成为最有价值的方法,但在工业企业中仍然没有得到充分的应用。其主要原因是缺乏足够的定量数据来对这种技术进行全面验证。本工作的目的是提供有关使用闪光灯热成像技术评估纤维增强复合材料中孔隙率百分比并提供最新结果的最新技术概述,这些结果由作者收集,在多孔碳纤维增强的聚合物层压板上。为此,用非破坏性和破坏性测试技术来制造和检查两个不同堆叠顺序的多个试样,并包括不同数量的孔隙率。将通过闪速热成像或超声波进行的非破坏性测试得出的数据与孔隙率百分比作图,该孔隙率百分比先前已使用体积法进行了估算。新获得的结果证明了闪光热成像的功效。还突出了一些需要进一步考虑的关键点。

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