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首页> 外文期刊>Journal of Thermoplastic Composite Materials >On the numerical simulation of injection molding processes with integrated textile fiber reinforcements
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On the numerical simulation of injection molding processes with integrated textile fiber reinforcements

机译:集成纺织纤维增强材料注塑成型过程的数值模拟

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摘要

In the present article, the polymer melt impregnation of textile fiber reinforcements in an injection molding process is explored theoretically and experimentally. Simplifying the numerical simulation of the thermoplastic melt flow behavior a specific mold with integrated single-glass fiber bundle was developed and used for experimental fill studies with thermoplastic melt. The polymer melt impregnation of the fiber bundle in the injection molding process is modeled and calculated with Complex Rheology Polymer Solver (CoRheoPol), a simulation tool developed at Fraunhofer Institut fur Techno- und Wirtschaftsmathematik by the present authors. Navier-Stokes and Navier-Stokes-Brinkman equations are used to describe the melt flow in a pure fluid region and porous media, considering the non-Newtonian flow behavior of thermoplastic melts. Experimental and numerical results are compared determining the filling fronts and fiber impregnation of the injection molded test samples. A clear relationship between the degree of impregnation, verified by magnified photomicrograph, and the position of flow front can be detected. A good correlation of simulated and experimental flow fronts against the degree of filling of the mold is observed too. The differences in macroscopic flow behavior between the cavity with and without an integrated fiber bundle with respect to the impregnation process can be simulated with high accuracy.
机译:在本文中,从理论和实验上探讨了注射成型过程中纺织纤维增强材料的聚合物熔体浸渍。为简化热塑性熔体流动行为的数值模拟,开发了带有集成单玻璃纤维束的特定模具,并将其用于热塑性熔体的实验填充研究。纤维束在注射成型过程中的聚合物熔体浸渍是通过复杂流变聚合物求解器(CoRheoPol)进行建模和计算的,该软件是作者在弗劳恩霍夫技术研究所开发的模拟工具。考虑到热塑性熔体的非牛顿流动特性,Navier-Stokes和Navier-Stokes-Brinkman方程用于描述纯流体区域和多孔介质中的熔体流动。比较实验结果和数值结果,确定注射成型测试样品的填充前沿和纤维浸渍度。可以检测到浸渍度(通过放大的显微照片证实)与流动前沿的位置之间的明确关系。还观察到模拟和实验流动前沿与模具填充程度之间的良好相关性。可以高精度地模拟具有和不具有集成纤维束的空腔之间的宏观流动行为相对于浸渍过程的差异。

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