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Local anisotropy analysis of injection moulded fibre reinforced polymer composites

机译:注塑纤维增强聚合物复合材料的局部各向异性分析

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摘要

The fibre orientation distribution in a material sample extracted from an injection moulded plate, displaying the commonly encountered layered shell-core-shell structure, was analyzed. Starting from a micro-tomography reconstruction of the sample, instead of trying to isolate each single fibre and measuring its geometrical properties, we derived the components of a fabric tensor from the evaluation of a global anisotropy parameter, the mean intercept length MIL. This parameter, commonly employed for the analysis of biological and geological structures, proved to be an efficient tool for the analysis of the structure of short fibre reinforced composites. The local variations of the degree of anisotropy (ratio of the maximum and minimum eigenvalues of the fabric tensor) from the shell to the core layers of the injection moulded plate could be captured and information about the local average fibre orientation angle was also obtained.
机译:分析了从注射成型板中提取的材料样品中的纤维取向分布,显示了常见的分层壳-核-壳结构。从样本的显微断层摄影术重建开始,而不是尝试分离每根单纤维并测量其几何特性,我们从整体各向异性参数(平均截距长度MIL)的评估中得出织物张量的成分。该参数通常用于分析生物和地质结构,被证明是分析短纤维增强复合材料结构的有效工具。从外壳到注塑板芯层的各向异性程度的局部变化(织物张量的最大和最小特征值之比)可以被捕获,并且还可以获得有关局部平均纤维取向角的信息。

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