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纤维增强复合材料的真空腔灌注

Vacuum Chamber Infusion for Fiber-Reinforced Composites.

作者信息

Grisin Benjamin, Carosella Stefan, Middendorf Peter

机构信息

Institute of Aircraft Design (IFB), University of Stuttgart, Pfaffenwaldring 31, 70569 Stuttgart, Germany.

出版信息

Polymers (Basel). 2024 Sep 30;16(19):2763. doi: 10.3390/polym16192763.

Abstract

A new approach to an automatable fiber impregnation and consolidation process for the manufacturing of fiber-reinforced composite parts is presented in this article. Therefore, a vacuum chamber sealing machine classically used in food packaging is modified for this approach-Vacuum Chamber Infusion (VCI). Dry fiber placement (DFP) preforms, made from 30 k carbon fiber tape, with different layer amounts and fiber orientations, are infused with the VCI and with the state-of-the-art process-Vacuum Assisted Process (VAP)-as the reference. VCI uses a closed system that is evacuated once, while VAP uses a permanently evacuated open system. Since process management greatly influences material properties, the mechanical properties, void content, and fiber volume fraction (FVF) are analyzed. In addition, the study aims to identify how the complexity of a resin infusion process can be reduced, the automation potential can be increased, and the number of consumables can be reduced. Comparable material characteristics and a reduction in consumables, setup complexity, and manufacturing time by a factor of four could be approved for VCI. A void content of less than 2% is measured for both processes and an FVF of 39% for VCI and 45% for VAP is achieved.

摘要

本文介绍了一种用于制造纤维增强复合材料部件的可自动化纤维浸渍和固结工艺的新方法。因此,对食品包装中经典使用的真空室密封机进行了改进,用于这种方法——真空室灌注(VCI)。由30k碳纤维带制成的具有不同层数和纤维取向的干纤维铺放(DFP)预成型件,分别采用VCI以及作为参考的最先进工艺——真空辅助工艺(VAP)进行灌注。VCI使用一个封闭系统,只需抽一次真空,而VAP使用一个永久抽真空的开放系统。由于工艺管理对材料性能有很大影响,因此对机械性能、孔隙率和纤维体积分数(FVF)进行了分析。此外,该研究旨在确定如何降低树脂灌注工艺的复杂性、提高自动化潜力以及减少耗材数量。对于VCI,可以确认其具有可比的材料特性,并且耗材、设置复杂性和制造时间减少了四倍。两种工艺测得的孔隙率均小于2%,VCI的FVF为39%,VAP的FVF为45%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17ba/11479195/0004005988e1/polymers-16-02763-g001.jpg

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