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Application and Evaluation of the Method of Ellipses for Measuring the Orientation of Long, Semi-Flexible Fibers

机译:椭圆测量长,半柔性纤维取向的方法的应用与评估

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The method of ellipses (MoE) is a common experimental technique utilized to quantitatively determine the orientation state of a population of rigid fibers within a fiber-polymer composite. In this research, the validity of applying the MoE to long, semi-flexible fiber systems in which the majority of fibers are flexible is discussed. The components of the orientation tensor were first determined for a composite formed by a homogenous, simple shear field. The minimum acceptable image analysis width, or bin width, for the selected geometry was found to be ~5.5 mm, or 1.4 times the average fiber length. This modified bin width was then used to determine the orientation at multiple percentages of flow within an injection-molded, center-gated disc, and compared to orientation values obtained utilizing the traditional, 0.7-mm bin width. The results show that the traditional, 0.7-mm bin width is sufficient for analysis of the center-gated geometry. This fortuitous result is attributed to the axisymmetric nature of the center-gated geometry, and the highly transverse fiber alignment seen within the samples, especially at moderate to high percentages of flow. In more complex flows, it is expected that the conventional bin Width will not apply.
机译:椭圆法(MoE)是一种常见的实验技术,用于定量确定纤维-聚合物复合材料中的刚性纤维群的取向状态。在这项研究中,讨论了将MoE应用于其中大部分纤维具有柔韧性的长半柔性纤维体系的有效性。首先确定由均匀,简单的剪切场形成的复合材料的取向张量的分量。发现所选几何形状的最小可接受图像分析宽度或箱宽度为〜5.5 mm,即平均纤维长度的1.4倍。然后,将这种修改后的箱宽用于确定注塑成型的中心浇口圆盘内多个流量百分比的方向,并将其与使用传统0.7毫米箱宽获得的方向值进行比较。结果表明,传统的0.7毫米箱宽足以分析中心门控几何形状。这种偶然的结果归因于中心门控几何形状的轴对称性质,以及在样品中看到的高度横向的纤维排列,特别是在中等至高百分比的流量下。在更复杂的流中,预期常规bin宽度将不适用。

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