论文标题
大型纤维增强复合成分的X射线含量计算区域的局部纤维取向
Local Fiber Orientation from X-ray Region-of-Interest Computed Tomography of large Fiber Reinforced Composite Components
论文作者
论文摘要
局部纤维取向是对纤维增强聚合物零件的机械性能至关重要的微结构特征。它可以通过微型层析成像数据和随后的3D图像进行定量分析来确定。但是,尽管本质上是无损的,但到目前为止,这种方法需要切割几毫米边缘长度的样品,以实现分析所需的高横向分辨率。在这里,我们报告了利益区域扫描与结构纹理取向分析的成功组合,从而使上述方法确实无损。扫描和分析了由纤维增强聚合物制成的汽车行业的大型轴承部分的几个兴趣区域。这些区域在局部纤维方向方面的差异进行了量化。此外,证明了基于不同横向分辨率扫描的分析的一致性。最后,比较了其中一个区域的测量和数值模拟方向张量。
The local fiber orientation is a micro-structural feature crucial for the mechanical properties of parts made from fiber reinforced polymers. It can be determined from micro-computed tomography data and subsequent quantitative analysis of the resulting 3D images. However, although being by nature non-destructive, this method so far has required to cut samples of a few millimeter edge length in order to achieve the high lateral resolution needed for the analysis. Here, we report on the successful combination of region-of-interest scanning with structure texture orientation analysis rendering the above described approach truly non-destructive. Several regions of interest in a large bearing part from the automotive industry made of fiber reinforced polymer are scanned and analyzed. Differences of these regions with respect to local fiber orientation are quantified. Moreover, consistency of the analysis based on scans at varying lateral resolutions is proved. Finally, measured and numerically simulated orientation tensors are compared for one of the regions.