Applications for carbon fibre recovered from composites

S. Pickering, Z. Liu, T. Turner, Kh Wong
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引用次数: 37

Abstract

Commercial operations to recover carbon fibre from waste composites are now developing and as more recovered fibre becomes available new applications for recovered fibre are required. Opportunities to use recovered carbon fibre as a structural reinforcement are considered involving the use of wet lay processes to produce nonwoven mats. Mats with random in-plane fibre orientation can readily be produced using existing commercial processes. However, the fibre volume fraction, and hence the mechanical properties that can be achieved, result in composites with limited mechanical properties. Fibre volume fractions of 40% can be achieved with high moulding pressures of over 100 bar, however, moulding at these pressures results in substantial fibre breakage which reduces the mean fibre length and the properties of the composite manufactured. Nonwoven mats made from aligned, short carbon fibres can achieve higher fibre volume fractions with lower fibre breakage even at high moulding pressure. A process for aligning short fibres is described and a composite of over 60% fibre volume fraction has been manufactured at a pressures up to 100 bar with low fibre breakage. Further developments of the alignment process have been undertaken and a composite of 46% fibre volume fraction has been produced moulded at a pressure of 7 bar in an autoclave, exhibiting good mechanical properties that compete with higher grade materials. This demonstrates the potential for high value applications for recovered carbon fibre by fibre alignment.
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从复合材料中回收碳纤维的应用
目前正在开发从废弃复合材料中回收碳纤维的商业操作,随着越来越多的回收纤维可用,需要对回收纤维进行新的应用。利用回收的碳纤维作为结构加固材料的机会被认为涉及使用湿铺工艺来生产非织造垫。使用现有的商业工艺可以很容易地生产具有随机平面内纤维取向的垫子。然而,纤维体积分数,因此可以实现的机械性能,导致复合材料具有有限的机械性能。在超过100巴的高成型压力下,纤维体积分数可以达到40%,然而,在这些压力下成型会导致大量纤维断裂,从而减少纤维的平均长度和所制造的复合材料的性能。由排列整齐的短碳纤维制成的无纺布垫即使在高成型压力下也能获得更高的纤维体积分数和更低的纤维断裂。本文描述了一种对准短纤维的工艺,并在高达100巴的压力下制造了纤维体积分数超过60%的复合材料,纤维断裂率低。对校准工艺进行了进一步的开发,在高压灭菌器中,在7 bar的压力下,生产出了纤维体积分数为46%的复合材料,具有与高级材料竞争的良好机械性能。这证明了通过纤维排列回收碳纤维的高价值应用潜力。
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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