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首页> 外文期刊>Journal of polymer engineering >Unsaturated polyester/E-glass fiber composites made by vacuum assisted compression resin transfer molding
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Unsaturated polyester/E-glass fiber composites made by vacuum assisted compression resin transfer molding

机译:真空辅助压缩树脂传递模塑制得的不饱和聚酯/电子玻璃纤维复合材料

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摘要

A variant process incorporating the method of bag compression into resin transfer molding (RTM), called vacuum assisted compression RTM (VACRTM), has been developed to reduce the cycling period and improve the quality of the part. The process utilizes a flexible bag placed between the upper mold and the preform compared with RTM. By controlling the stretchable bag, the resin is easily introduced into the cavity filled with a loose preform. Then, ambient pressure is applied on the bag that compacts the preform and drives the resin through the remaining dry preform. The objective of this research is to explore the simplified VACRTM feasibility and investigate the effects of process variables, including resin temperature, resin infusion pressure, mold cavity height and cure temperature, on the mechanical strength of the part, by applying Taguchi's method. The results show that VACRTM has advantages in terms of its being an easy and good seal among mold parts and the the lack of a need to clean the upper mold. The resin infusion pressure is a significant variable for improvement of the mechanical strength of the part. Optimal VACRTM reduces the filling time by 58% and increases the flexural strength by 10%, as compared with typical vacuum assisted RTM (VARTM).
机译:已开发出一种将袋压缩方法结合到树脂传递模塑(RTM)中的变型工艺,称为真空辅助压缩RTM(VACRTM),以缩短循环周期并提高零件质量。与RTM相比,该工艺利用了放置在上模和预成型件之间的柔性袋。通过控制可拉伸袋,可以轻松地将树脂引入填充有松散预成型件的空腔中。然后,将环境压力施加到袋子上,该袋子压实预成型件并驱动树脂通过剩余的干燥预成型件。这项研究的目的是探索简化的VACRTM可行性,并通过应用Taguchi方法研究工艺变量(包括树脂温度,树脂注入压力,模腔高度和固化温度)对零件机械强度的影响。结果表明,VACRTM具有以下优势:在模具部件之间容易且良好地密封,并且无需清洁上模具。树脂注入压力是改善零件机械强度的重要变量。与典型的真空辅助RTM(VARTM)相比,最佳VACRTM可将填充时间减少58%,并将弯曲强度提高10%。

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