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Flow Front Measurements and Model Validation in the Vacuum Assisted Resin Transfer Molding Process

机译:真空辅助树脂传递模塑工艺中的流锋测量和模型验证

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Through-thickness measurements were recorded to experimentally investigate the through thickness flow and to validate a closed form solution of the resin flow during the vacuum assisted resin transfer molding process (VARTM). During the VARTM process, a highly permeable distribution medium is incorporated into the preform as a surface layer and resin is infused into the mold, under vacuum. During infusion, the resin flows preferentially across the surface and simultaneously through the thickness of the preform, giving rise to a three dimensional-flow front. The time to fill the mold and the shape of the flow front, which plays a key role in dry spot formation, are critical for the optimal manufacture of large composite parts. An analytical model predicts the flow times and flow front shapes as a function of the properties of the preform, distribution media and resin. It was found that the flow front profile reaches a parabolic steady state shape and the length of the region saturated by resin is proportional to the square root of the time elapsed. Experimental measurements of the flow of resin through the thickness of the preform layer and the progression of flow along the length of the part. The time to fill the part, the length of flow front and its shapes show good agreement between experiments and the analytical model. The experimental study demonstrates the need for control and optimization of resin injetion during the manufacture of large parts by VARTM.
机译:记录厚度测量值,以实验研究厚度贯穿流,并验证真空辅助树脂传递模塑工艺(VARTM)期间树脂流的封闭形式溶液。在VARTM过程中,将高渗透性的分配介质作为表面层结合到预成型件中,并在真空下将树脂注入模具中。在注入过程中,树脂优先流经表面,并同时流经预成型件的厚度,从而产生了三维流动前沿。填充模具的时间和流动前沿的形状(在干点形成中起关键作用)对于大型复合材料零件的最佳制造至关重要。分析模型可根据预成型件,分配介质和树脂的性能预测流动时间和流动前沿形状。发现流动前沿轮廓达到抛物线稳态形状,并且树脂饱和的区域的长度与经过的时间的平方根成比例。实验测量的是树脂流经预成型坯层的厚度以及沿零件长度方向的流动进程。填充零件的时间,流动前沿的长度及其形状在实验和分析模型之间显示出良好的一致性。实验研究表明,在通过VARTM制造大型零件的过程中,需要控制和优化树脂注射。

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