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Numerical study of the vacuum infusion process for laminated composites with different fiber orientations

机译:不同纤维取向层压复合材料真空灌注过程的数值研究

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摘要

The vacuum infusion is a process usually applied to manufacture large structures of composite materials, such as wind turbine blades. This work analyzes the macroscopic resin flow through a laminate of fiberglass plies with different orientations, during the filling stage of the vacuum infusion process to manufacture two different pieces. The pressure inside the mold, velocity vectors, and the resin inlet mass flow are studied through a three-dimensional numerical modeling under non-steady conditions validated experimentally. The numerical model simulates each ply of the laminate like an individual porous media and takes into account the stacking sequence of the laminate. The influence of the permeability values of the distribution media and of the fiberglass laminate on the evolution of resin infusion is analyzed. The numerical model reproduces the effects of the stacking sequence and race tracking on the resin flow front.
机译:真空灌注是通常用于制造大型复合材料结构(例如风力涡轮机叶片)的过程。这项工作分析了在真空灌注过程的填充阶段中,通过不同方向的玻璃纤维层状层压板流动的宏观树脂流动,从而制造出两个不同的零件。在非稳态条件下,通过三维数值模型研究了模具内部的压力,速度矢量和树脂入口质量流量,并进行了实验验证。数值模型像单独的多孔介质一样模拟层压板的每个层,并考虑了层压板的堆叠顺序。分析了分布介质和玻璃纤维层压板的渗透率值对树脂注入过程的影响。数值模型再现了堆叠顺序和种族跟踪对树脂流动前沿的影响。

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