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Investigation of capillary impregnation for permeability prediction of fibrous reinforcements

机译:毛细管浸渍法预测纤维增强材料的渗透性

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In thermoplastic pultrusion process, unidirectional glass fibre bundles are very often used as reinforcement. This study was motivated by the industrial requirement to evolve from low viscosity thermoset resin processes to high viscosity thermoplastic polymers. The key parameters to control the impregnation process are the permeability of the fibrous reinforcement and the capillary pressure. The current study's objectives are threefold: (1) study the fibres arrangement by X-ray tomography, (2) determine the longitudinal and transversal permeabilities as well as capillary pressure to use them as input parameters of impregnation process in pultrusion and (3) carry out sensitivity analyses of the permeability measurements to the perturbation of fibre structure. To reach these purposes, two theoretical models were used to determine both axial and transversal tow permeability. The axial impregnation of aligned fibres was described by Washburn equation applied to 1D infiltration into the bundles. The in-plane impregnation was described by Darcy's law. The elliptical equation for highly anisotropic medium was resolved. Results show that permeability measurements are subjected to large variations, caused by perturbation of the fibre architecture during experiments. Besides, it was shown that the tensile force applied on fibres during pultrusion has a great effect on impregnation. Indeed, the permeability increases with the applied tension.
机译:在热塑性拉挤成型工艺中,单向玻璃纤维束通常用作增强材料。这项研究是受工业需求推动的,从低粘度热固性树脂工艺发展到高粘度热塑性聚合物。控制浸渍过程的关键参数是纤维增强材料的渗透性和毛细压力。当前的研究目标是三个方面:(1)通过X射线断层摄影术研究纤维排列;(2)确定纵向和横向渗透率以及毛细压力,以将它们用作拉挤成型浸渍过程的输入参数;(3)携带排除了渗透率测量对纤维结构扰动的敏感性分析。为了达到这些目的,使用两个理论模型来确定轴向和横向拖曳渗透率。对齐纤维的轴向浸渍是通过Washburn方程描述的,该方程适用于一维渗透到束中。达西定律描述了面内浸渍。求解了高度各向异性介质的椭圆方程。结果表明,渗透率测量值受实验过程中纤维结构扰动的影响较大。此外,还表明在拉挤过程中施加在纤维上的张力对浸渍有很大影响。实际上,渗透率随所施加的张力而增加。

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