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Accurate predictions of orientation dependent modulus in short-fiber-reinforced composite with experimental validation

机译:实验验证的短纤维增强复合材料中取向依赖模量的精确预测

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摘要

Predictions of fiber orientation dependent mechanical properties are extremely important in the automotive industry for injection molded fiber-reinforced thermoplastic composites. Prior studies on three-dimensional (3D) numerical computations have not had satisfactory results in the searches for significant deviation in the core region and skin boundary of a fiber orientation pattern, although the orientation in the shell layer was predicted fairly well. To perform the connection between fiber orientation and the mechanical properties in a familiar short-fiber composite, therefore they aim for accurate predictions of the anisotropic fiber orientation at various flow factors in a reliable, 3D injection molding simulation within a new objective fiber orientation model. Comparisons of the predictive fiber orientation and tensile modulus with related experimental data were also made herein, as well as including variation in the modulus along the flow distance from the gate. POLYM. COMPOS., 39:2847-2859, 2018. (c) 2016 Society of Plastics Engineers
机译:纤维取向依赖性机械性能的预测在用于注射成型纤维增强热塑性复合材料的汽车工业中非常重要。关于三维(3D)数值计算的研究结果在搜索中没有令人满意的结果,对于纤维方向图案的核心区域和皮肤边界的显着偏差,尽管壳层中的取向相当良好地预测。为了在熟悉的短纤维复合材料中执行纤维取向和机械性能之间的连接,因此它们的目标是在新的物镜纤维方向模型中在可靠的3D注射成型模拟中进行各种流动因子的各向异性纤维取向的准确预测。本文还进行了预测纤维取向和带有相关实验数据的拉伸模量的比较,以及包括沿着栅极流量距离的模量的变化。聚合物。 Compos。,39:2847-2859,2018。(c)2016年塑料工程师协会

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