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Analysis of CFRP Joints by Means of T-Pull Mechanical Test and Ultrasonic Defects Detection

机译:通过T拉机械测试和超声缺陷检测分析CFRP接头

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摘要

Defects detection within a composite component, with the aim of understanding and predicting its mechanical behavior, is of great importance in the aeronautical field because the irregularities of the composite material could compromise functionality. The aim of this paper is to detect defects by means of non-destructive testing (NDT) on T-pull samples made by carbon fiber reinforced polymers (CFRP) and to evaluate their effect on the mechanical response of the material. Samples, obtained from an industrial stringer having an inclined web and realized with a polymeric filler between cap and web, were subjected to ultrasonic monitoring and then to T-pull mechanical tests. All samples were tested with the same load mode and the same test configuration. An experimental set-up consisting of a semiautomatic C-scan ultrasonic mapping system with a phased array probe was designed and developed, optimizing control parameters and implementing image processing software. The present work is carried out on real composites parts that are characterized by having their intrinsic defectiveness, as opposed to the previous similar results in the literature mainly obtained on composite parts with artificially produced defects. In fact, although samples under study were realized free from defects, ultrasonic mapping found defectiveness inside the material. Moreover, the ultrasonic inspection could be useful in detecting both the location and size of defects. Experimental data were critically analyzed and qualitatively correlated with results of T-pull mechanical tests in order to better understand and explain mechanical behavior in terms of fracture mode.
机译:缺陷在复合部件内的缺陷检测,目的是理解和预测其机械行为,在航空领域具有重要意义,因为复合材料的不规则可能会损害功能。本文的目的是通过碳纤维增强聚合物(CFRP)制成的T型拉样品上的非破坏性测试(NDT)来检测缺陷,并评估它们对材料的机械响应的影响。从具有倾斜网的工业纵梁获得并用聚合物填料在帽和幅材之间实现的样品进行超声监测,然后进行超声波监测,然后进行T型机械测试。用相同的负载模式和相同的测试配置测试所有样品。设计和开发,优化了控制参数和实现图像处理软件,设计了由分阶段阵列探头的半自动C扫描超声波映射系统组成的实验设置。本作本作的实际复合材料零件,其特征在于具有本质缺陷的特征,而与主要在具有人工产生的缺陷的复合部件上主要获得的文献中的先前类似的结果。事实上,尽管在研究下的样品免于没有缺陷,但超声波映射发现了材料内的缺陷。此外,超声波检查可用于检测缺陷的位置和尺寸。实验数据严重分析和定性与T型机械测试结果相关,以便在裂缝模式方面更好地理解和解释机械行为。

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