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Simulation of fiber reinforced composite materials mold filling process and mechanical properties analysis

机译:纤维增强复合材料充模过程的模拟及力学性能分析

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摘要

A dynamic simulation of fiber reinforced composite materials mold filling process with double inlets is presented based on the gas-solid-liquid model proposed by Yang et al. [B.X. Yang, J. Ouyang, J. Tao, C.T. Liu, Modeling and simulation of fiber reinforced polymer mold filling process by level set method, CMES - Computer Modeling in Engineering and Sciences 63 (3) (2010) 191-222]. Numerical results show that the fibers far away from the melt interface are in skin-core-skin structure, while those near the interface are almost parallel to the arc of the interface. When the two streams of melts meet, the weld line will be formed, where the orientation of fibers is perpendicular to the flow direction. The orientation of fibers of the numerical result shows well agreement with the experimental results. Finally, the mechanical properties of fiber reinforced composite materials are analyzed. The composite materials with skin-core-skin structure are regarded as laminated orthogonal plywood and the elastic modulus, the shear modulus and Poisson's ratio are predicted under different slenderness ratios and fiber volume fractions.
机译:基于Yang等人提出的气固液模型,提出了双进口纤维增强复合材料模具充型过程的动态模拟。 [B.X.杨J.欧阳J.陶J.T. Liu,通过水平集方法对纤维增强聚合物模具填充过程进行建模和仿真,CMES-工程与科学计算机建模63(3)(2010)191-222]。数值结果表明,远离熔体界面的纤维为皮-芯-皮结构,而靠近界面的纤维几乎与界面的弧度平行。当两条熔体流汇合时,将形成熔合线,其中纤维的方向垂直于流动方向。数值结果表明纤维的取向与实验结果吻合良好。最后,对纤维增强复合材料的力学性能进行了分析。将具有皮-芯-皮结构的复合材料视为层压正交胶合板,并预测了在不同的纤细比和纤维体积分数下的弹性模量,剪切模量和泊松比。

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