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Simulation of compression resin transfer molding to manufacture thin composite shells

机译:模拟压缩树脂传递模塑制造复合材料薄壳

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The resin flow through fiber reinforcements in Compression Resin Transfer Molding (CRTM) has been modeled by Pham et al. First the preform is partially filled by resin during the injection phase. Then it is compressed by the mobile part of the mold. The resin flow in the fiber bed is governed by Darcy's law. The consolidation of the saturated preform is described by the total mass conservation. A mathematical model is developed for thin curved composite parts. A filling algorithm based on resin conservation on a deformable grid is used to advance the flow front at each time step. Resin pressure and velocity are calculated by the finite element method. Several control parameters of the CRTM process are investigated in this study, such as the compaction speed of the mold upper wall, the injection pressure and the closing/opening of the injection gate. The numerical model allows the calculation of pressure distribution in the mold, which is compared with analytical solutions and experimental results.
机译:Pham等人对在压缩树脂传递模塑(CRTM)中流经纤维增强材料的树脂进行了建模。首先,在注射阶段,用树脂部分填充预成型件。然后,它被模具的活动部分压缩。纤维床中的树脂流动受达西定律控制。饱和预制棒的固结由总质量守恒来描述。建立了用于薄弯曲复合零件的数学模型。使用基于可变形网格上的树脂保留的填充算法来在每个时间步长推进流动前沿。树脂压力和速度通过有限元法计算。在这项研究中,研究了CRTM工艺的几个控制参数,例如模具上壁的压实速度,注射压力和注射门的关闭/打开。数值模型可以计算模具中的压力分布,并将其与解析解和实验结果进行比较。

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