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A New Fuzzy Geometrical Approach to Classify Defects in Composite Materials

机译:复合材料缺陷分类的一种新的模糊几何方法

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摘要

It is well known that in the Non Destructive Testing/Evaluation (NDT/E) context, Ultrasonic Echoes (UEs) and Tests (UTs) are intensively exploited to identify and characterize defects in the Carbon Fiber Reinforced Polymer (CFRP). This paper examines the localization and the classification of defects in this material from a fuzzy geometrical point of view. In particular, starting from an experimental campaign of measurements carried out in our Lab (Laboratory of Electrical Engineering & Non-Destructive Tests and Evaluations, "Mediterranea" University of Reggio Calabria), fuzzy subsethood calculus is taken into account to translate the characterization of a defect in CFRP into a sort of "fuzzy distance" among UEs. Finally, the floor is open for any questions related to the comparison with a higher computational complexity heuristic technique.
机译:众所周知,在非破坏性测试/评估(NDT / E)上下文中,超声回波(UE)和测试(UT)被大量利用来识别和表征碳纤维增强聚合物(CFRP)中的缺陷。本文从模糊的几何角度检查了这种材料中缺陷的定位和分类。特别是,从在我们的实验室(电气工程与无损测试与评估实验室,雷焦卡拉布里亚大学,“地中海”实验室)进行的实验性测量活动开始,考虑了模糊子集演算来转化CFRP中的缺陷会导致UE之间的“模糊距离”。最后,对于使用较高计算复杂度启发式技术进行比较的任何问题,我们都敞开了怀抱。

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