Carbon Fiber Composites Recycling Technology Enabled by the TuFF Technology

IF 4.6 Q2 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Recycling Pub Date : 2024-02-02 DOI:10.3390/recycling9010011
Tekin Ozdemir, J. Deitzel, Roger Crane, Shridhar Yarlagadda, Chris Blackwell, Mark Davis, Rebecca Emmerich, Dirk Heider
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引用次数: 0

Abstract

Carbon Fiber Composites (CFCs) recycling has received increasing interest by the composites industry, but it is still in its early stages as an industry. There are two primary challenges that need to be addressed in order to achieve full property retention during CFC recycling: (1) the ability to recover the fiber content without property loss; and (2) conversion of the recycled, short fiber material back into high-performance CFC structures. The ability to manufacture high fiber volume fraction CFCs with end-of-life products would provide an opportunity to reduce material cost and lifetime-embodied energy. In this paper, recycled, short carbon fibers are processed via solvolysis and converted into high-performance CFCs with fiber volume fraction of ~50% and excellent composite property retention. This is enabled through alignment of the discontinuous, recycled fiber feedstock using the Tailorable universal Feedstock for Forming (TuFF) process. The paper introduces the necessary steps to process the fibers in the wet-laid process and explores the resulting mechanical and microstructural properties. The importance of incoming fiber surface quality and the effect of surface contamination from residue left by the recycling process on both the TuFF process and final composite properties is discussed in detail. A pyrolytic process has been adopted to remove the residue that is a by-product of the recycling process from the incoming recycled fiber surface. The approach presents a promising pathway for the recycling of high-performance CFCs.
由 TuFF 技术实现的碳纤维复合材料回收技术
碳纤维复合材料(CFCs)的回收利用越来越受到复合材料行业的关注,但作为一个行业,它仍处于早期阶段。为了在 CFC 回收过程中实现完全的性能保持,需要解决两个主要挑战:(1)在不损失性能的情况下回收纤维成分的能力;(2)将回收的短纤维材料重新转化为高性能的 CFC 结构。利用报废产品制造高纤维体积分数的氟氯化碳,将为降低材料成本和生命周期内的能耗提供机会。本文通过溶解法处理回收的短碳纤维,并将其转化为高性能的氯氟化碳,纤维体积分数约为 50%,复合材料性能保持良好。通过使用可定制通用成型原料(TuFF)工艺对不连续的回收纤维原料进行对齐,从而实现了这一目标。本文介绍了在湿法铺层工艺中加工纤维的必要步骤,并探讨了由此产生的机械和微观结构特性。文中详细讨论了入料纤维表面质量的重要性,以及回收过程中残留物造成的表面污染对 TuFF 工艺和最终复合材料性能的影响。该研究采用了热解工艺来去除回收过程中产生的残留物,这些残留物是回收纤维表面的副产品。这种方法为高性能氯氟化碳的再循环提供了一条很有前景的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Recycling
Recycling Environmental Science-Management, Monitoring, Policy and Law
CiteScore
6.80
自引率
7.00%
发文量
84
审稿时长
11 weeks
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