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3D CHARACTERISATION OF CARBON FIBRE REINFORCED COMPOSITE MICROSTRUCTURE VIA X-RAY COMPUTED TOMOGRAPHY

机译:碳纤维增强复合微结构通过X射线计算断层扫描的三维特征

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Carbon fibre reinforced polymer (CFRP) composite materials possess highly desirable physical and chemical properties and are now commonly utilized in many structural components in aerospace, civil engineering, military, as well as in motorsports and other competition sports. Structural defects in CFRPs are often caused by insufficient fibre impregnation and non-optimized process parameters during the manufacturing process. These defects can severely compromise the expected performance from CFRPs. Understanding the characteristic geometry and shape of these defects as well as their spatial distribution within the three-dimensional (3D) CFRP's structure (matrix and fibres) can provide insight into the origin of their formation and can enable optimization of the fabrication process. In this study, a state-of-art 3D X-ray microscopy technique by computed-tomography (micro-CT), combined with tomographic volume analysis and visualization tools, has been utilized to study a suite of highly different CFRPs. Using both proprietary and open-source software, the main constituent materials (fibres, matrix/resin, voids) of the samples have been identified and segmented; the distribution of each material is then mapped in 3D and the respective volume fractions are quantified. As a case study, segmented voids have been clustered into two different families based on their shape and preferential location within the material micro-structure of one particular sample.
机译:碳纤维增强聚合物(CFRP)复合材料具有非常理想的物理和化学性质,现在通常在航空航天,土木工程,军事以及赛车和其他竞争体育中的许多结构部件中使用。 CFRP中的结构缺陷通常由纤维浸渍不足和制造过程中的非优化工艺参数引起的。这些缺陷可以严重损害来自CFRP的预期性能。理解这些缺陷的特征几何形状和形状以及其三维(3D)CFRP结构(矩阵和纤维)内的空间分布可以提供对其形成的来源的洞察,并且可以实现制造过程的优化。在该研究中,通过计算断层扫描(Micro-CT)的最先进的3D X射线显微镜技术,与断层卷分析和可视化工具结合起来,已经利用来研究一套高度不同的CFRP。使用专有和开源软件,已经鉴定并分段了样品的主要构成材料(纤维,基质/树脂,空隙);然后在3D中映射每个材料的分布,量化各个体积分数。作为一个案例研究,将分段空隙基于其在一个特定样品的材料微结构内的形状和优先位置聚集成两种不同的家庭。

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