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首页> 外文期刊>NDT & E International: Independent Nondestructive Testing and Evaluation >A novel approach for segmenting and mapping of local fiber orientation of continuous fiber-reinforced composite laminates based on volumetric images
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A novel approach for segmenting and mapping of local fiber orientation of continuous fiber-reinforced composite laminates based on volumetric images

机译:基于体积图像的连续纤维增强复合层压板局部纤维取向分割和映射的新方法

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摘要

High stiffness and low density of continuous fiber-reinforced polymer (CoFRP) composites lead to increasing importance of this material class in today's lightweight components. One of the most important subgroups of CoFRP composites are thermoplastic UD-tapes. These consist of several unidirectional continuously fiber-reinforced layers which are aligned with different orientations. During the forming process, the initial fiber orientations of the laminate layers change individually. Since the mechanical properties like stiffness or damage behavior are significantly affected by the fiber orientation, methods for determining the fiber orientation distribution are essential to design composite components and validate process simulations. Modern X-ray computed tomography offers the opportunity to obtain high-resolution gray value volumetric images of fiber-reinforced structures. Methods to determine vectors aligned along the local fiber orientation are available in commercial and open-source software. In this paper, we present and compare several segmentation approaches based on layer thickness, fiber orientation angle and degree of fiber isotropy to separate each unidirectional tape layer and to analyze the layers individually. Moreover, we introduce mapping approaches, to transfer local fiber orientation of each tape layer to a discretized surface. The presented approaches can be applied to both plane and curved shell-shaped samples. Finally, the approaches are applied to a carbon fiber-reinforced polyamide 6 (PA6-CF) tape.
机译:连续纤维增强聚合物(COFRP)复合材料的高刚度和低密度导致当今轻质组件中这种材料类的重要性。 COFRP复合材料的最重要的子组之一是热塑性UD胶带。这些由几个单向连续纤维增强层组成,其以不同的取向对齐。在成形过程中,层压层的初始纤维取向单独变化。由于刚度或损坏行为的机械性能受到纤维取向的显着影响,因此确定纤维取向分布的方法对于设计复合组件并验证过程模拟至关重要。现代X射线计算机断层扫描术提供了获得纤维增强结构的高分辨率灰度体积图像的机会。在商业和开源软件中提供沿着本地纤维取向对准的载体的方法。本文在本文中,基于层厚度,纤维取向角度和纤维各向同性程度的若干分割方法进行了比较,以分离每个单向胶带层并单独分析层。此外,我们引入映射方法,将每个带层的局部纤维取向转移到离散表面。所提出的方法可以应用于平面和弯曲的壳形样品。最后,该方法应用于碳纤维增强聚酰胺6(PA6-CF)胶带。

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