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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Pressurized Infusion: A New and Improved Liquid Composite Molding Process
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Pressurized Infusion: A New and Improved Liquid Composite Molding Process

机译:加压输液:一种新型和改进的液体复合成型工艺

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摘要

Vacuum-assisted resin transfer molding (VARTM) has several inherent shortcomings such as long mold filling times, low fiber volume fraction, and high void content in fabricated laminates. These problems in VARTM mainly arise from the limited compaction of the laminate and low resin pressure. Pressurized infusion (PI) molding introduced in this paper overcomes these disadvantages by (i) applying high compaction pressure on the laminate by an external pressure chamber placed on the mold and (ii) increasing the resin pressure by pressurizing the inlet resin reservoir. The effectiveness of PI molding was verified by fabricating composite laminates at various levels of chamber and inlet pressures and investigating the effect of these parameters on the fill time, fiber volume fraction, and void content. Furthermore, spatial distribution of voids was characterized by employing a unique method, which uses a flatbed scanner to capture the high-resolution planar scan of the fabricated laminates. The results revealed that PI molding reduced fill time by 45%, increased fiber volume fraction by 16%, reduced void content by 98%, improved short beam shear (SBS) strength by 14%, and yielded uniform spatial distribution of voids compared to those obtained by conventional VARTM.
机译:真空辅助树脂转移成型(Vartm)具有几种固有的缺点,例如长模填充时间,低纤维体积分数和制造层压板中的高空隙含量。 Vartm中的这些问题主要是由于层压材料的有限压实和低树脂压力。本文引入的加压输液(PI)模制克服了(i)通过放置在模具上的外部压力室(II)通过加压入口树脂贮存器来增加树脂压力的外部压力室对所述层压材料上的高压压压力克服了这些缺点。通过在各种腔室和入口压力下制造复合层压材料并研究这些参数对填充时间,纤维体积分数和空隙含量的影响来验证PI模塑的有效性。此外,采用使用平板扫描仪的独特方法来表征空隙的空间分布,该方法采用平板扫描仪捕获制造层压板的高分辨率平面扫描。结果表明,PI成型将填充时间降低45%,纤维体积分数增加16%,减少了空隙含量98%,缩短的短束剪切(SBS)强度达14%,并与那些相比产生均匀的空隙空间分布。通过常规六浆化获得。

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