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Macroscopic fiber orientation model evaluation for concentrated short fiber reinforced polymers in comparison to experimental data

机译:与实验数据相比,宏观纤维取向模型评价浓缩短纤维增强聚合物的评价

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摘要

Advanced macroscopic fiber orientation models depend on a variety of phenomenological parameters. The aim of this work is to identify a fiber orientation model for concentrated short fiber reinforced polymers, which depends on a minimum number of parameters. A sliding plate experiment with repeatable initial conditions and a couette experiment, to cover high strains, are used to define an experimental validation curve. The major fiber orientation models (Folgar and Tucker, nematic, reduced strain closure [RSC], anisotropic rotary diffusion, ARD-RSC) are fitted to the validation curve. Since a slow evolution can be observed, the RSC model is necessary to fit the measured fiber orientation evolution. The dependency of the RSC model on the initial fiber orientation state and the influence of closure approximations are evaluated. Two validation cases show that the obtained parameters give good results in shear dominant parts, but are not able to predict fiber orientation in other flow regimes accurately.
机译:先进的宏观纤维方向模型取决于各种现象学参数。这项工作的目的是识别浓缩短纤维增强聚合物的纤维取向模型,这取决于最小数量的参数。具有可重复初始条件的滑板实验和耦合实验,以覆盖高菌株,用于定义实验验证曲线。主要的纤维定向模型(ovar和tucker,inematic,降低的菌株闭合[RSC],各向异性旋转扩散,ARD-RSC)安装在验证曲线上。由于可以观察到慢速进化,因此RSC模型是适合测量的纤维方向演化所必需的。评估RSC模型对初始光纤取向状态的依赖性以及闭合近似的影响。两个验证案例表明,所获得的参数在剪切主导部分提供良好的结果,但不能准确地预测其他流动制度的纤维取向。

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