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首页> 外文期刊>Journal of Composites Science >Simulation of Reinforced Reactive Injection Molding with the Finite Volume Method
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Simulation of Reinforced Reactive Injection Molding with the Finite Volume Method

机译:有限体积法模拟增强反应注射成型

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The reactive process of reinforced thermoset injection molding significantly influences the mechanical properties of the final composite structure. Therefore, reliable process simulation is crucial to predict the process behavior and relevant process effects. Virtual process design is thus highly important for the composite manufacturing industry for creating high quality parts. Although thermoset injection molding shows a more complex flow behavior, state of the art molding simulation software typically focusses on thermoplastic injection molding. To overcome this gap in virtual process prediction, the present work proposes a finite volume (FV) based simulation method, which models the multiphase flow with phase-dependent boundary conditions. Compared to state-of-the-art Finite-Element-based approaches, Finite-Volume-Method (FVM) provides more adequate multiphase flow modeling by calculating the flow at the cell surfaces with an Eulerian approach. The new method also enables the description of a flow region with partial wall contact. Furthermore, fiber orientation, curing and viscosity models are used to simulate the reinforced reactive injection molding process. The open source Computational-Fluid-Dynamics (CFD) toolbox OpenFOAM is used for implementation. The solver is validated with experimental pressure data recorded during mold filling. Additionally, the simulation results are compared to commercial Finite-Element-Method software. The simulation results of the new FV-based CFD method fit well with the experimental data, showing that FVM has a high potential for modeling reinforced reactive injection molding.
机译:增强型热固性注塑成型的反应过程会显着影响最终复合结构的机械性能。因此,可靠的过程仿真对于预测过程行为和相关过程效果至关重要。因此,虚拟工艺设计对于复合制造行业生产高质量零件至关重要。尽管热固性注塑成型显示出更复杂的流动行为,但最新的成型仿真软件通常专注于热塑性注塑成型。为了克服虚拟过程预测中的这一差距,本工作提出了一种基于有限体积(FV)的仿真方法,该方法使用与相位相关的边界条件对多相流进行建模。与最新的基于有限元的方法相比,有限体积方法(FVM)通过使用欧拉方法计算细胞表面的流动,提供了更充分的多相流动建模。新方法还可以描述具有部分壁接触的流动区域。此外,纤维取向,固化和粘度模型用于模拟增强型反应注射成型过程。开源的计算流体动力学(CFD)工具箱OpenFOAM用于实现。通过在模具填充期间记录​​的实验压力数据验证了求解器。此外,将仿真结果与商业有限元方法软件进行了比较。新的基于FV的CFD方法的仿真结果与实验数据非常吻合,表明FVM在建模强化反应注射成型方面具有很高的潜力。

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