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Uncertainty quantification of fiber orientation distribution measurements for long-fiber-reinforced thermoplastic composites

机译:长纤维增强热塑性复合材料的纤维取向分布测量的不确定性定量

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摘要

We present a detailed methodology for experimental measurement of fiber orientation distribution in injection-molded discontinuous fiber composites using the method of ellipses on two-dimensional cross sections. Best practices to avoid biases occurring during surface preparation and optical imaging of carbon-fiber-reinforced thermoplastics are discussed. A marker-based watershed transform routine for efficient image segmentation and the separation of touching fiber ellipses is developed. The sensitivity of the averaged orientation tensor to the image sample size is studied for the case of long-fiber thermoplastics. A Mori-Tanaka implementation of the Eshelby model is then employed to quantify the sensitivity of elastic stiffness predictions to biases in the fiber orientation distribution measurements.
机译:我们使用二维横截面上的椭圆方法提出了一种详细的注塑不连续纤维复合材料中纤维取向分布的实验测量方法。 讨论了避免在碳纤维增强热塑性塑料的表面制备和光学成像期间发生偏置的最佳实践。 开发了一种基于标记的流域变换程序,用于有效图像分割和触摸光纤椭圆的分离。 研究了平均取向张量对图像样本大小的敏感性,用于长纤维热塑性塑料的情况。 然后采用Mori-Tanaka的eShelby模型的实现来量化弹性刚度预测对纤维取向分布测量中的偏差的敏感性。

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