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Numerical simulation of flow and compaction during the cure of laminated composites

机译:层状复合材料固化过程中流动和压实的数值模拟

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摘要

The finite element formulation is developed to solve the flow and compaction problems to simulate the resin flow and laminate compaction during the hot-pressing process of fiber-reinforced composite laminates. The numerical flow-compaction model is based on the effective stress formulation, the continuity equations, and Darcy's flow theory. Two methods are used to calculate the variation of the laminate thickness, the simulated results validate the relationship of fiber motion and resin flow velocity. Together with the post-processor software, the visual laminate deforming process is realized through the node moving. The comparison between the predicted and experimental data shows that the program is reliable to predict the laminate thickness and the final fiber volume fraction distribution in the thickness direction.
机译:开发了有限元配方以解决流动和压实问题,以模拟纤维增强复合材料层压板在热压过程中的树脂流动和层压板的压实。数值流固模型基于有效应力公式,连续性方程式和达西流理论。两种方法用于计算层压板厚度的变化,仿真结果验证了纤维运动与树脂流速之间的关系。与后处理器软件一起,通过节点移动实现视觉层压板变形过程。预测数据与实验数据之间的比较表明,该程序可可靠地预测层压板的厚度以及最终的纤维体积分数在厚度方向上的分布。

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