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Thermoplastic Multi-Material Nonwovens from Recycled Carbon Fibres Using Wet-Laying Technology

机译:来自再生碳纤维的热塑性多材料非织造织物使用湿润铺设技术

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In this study, multi-material nonwovens were produced using a wet laying nonwoven batch process. The aim of this work is to investigate and develop nonwoven material solutions that can be used for a substitution of pure glass fibre (GF)-applications and also provide a more cost-sensitive option compared to nonwovens purely made from recycled carbon fibres (rCF). The multi-material-nonwovens of this study consisted of the functional components rCF and GF as well as a thermoplastic matrix, built by the admixture of PA6-fibres. All three fibre types were mixed directly within the nonwoven manufacturing process, respectively in the course of the initial weighed portions. Six different material compositions with individual amounts of rCF and GF were produced, but a constant overall fibre volume content (FVC) as well as a uniform grammage was defined. A hot pressing technique was used to consolidate these multi-material-nonwoven layers. Subsequently, the sheet materials were examined using tensile and 4-point bending tests, as well as wet-chemical fibre volume content determinations and micrographic sections. With regard to the mechanical performance, a near-linear increase is observed for increased proportions of recycled carbon fibres. In this context a potential for the use of multi-material-nonwovens consisting of rCF and GF can be found. It is demonstrated that rCF might be an adequate substituent for classical GF-applications. The results contribute to broadening the performance spectrum of rCF and thus to its substantial recycling route.
机译:在这项研究中,使用湿法成网非织造分批工艺制作多材料非织造布。这项工作的目的是研究并开发出可以用于纯玻璃纤维(GF)-applications的取代,并与由回收的碳纤维制成纯粹非织造布也提供一种更具成本敏感的选择的非织造材料的解决方案(RCF) 。本研究的多材料无纺织物包括功能组件和RCF GF以及热塑性基质,由PA6-纤维的混合物建。所有这三种类型的纤维直接无纺制造过程中混合,分别在初始称量部分的过程。与个别量RCF和GF的六个不同的材料组合物的制造,而是恒定的总纤维体积含量(FVC)以及均匀的克重定义。使用热压技术,以巩固这些多材料的非织造层。随后,使用拉伸和四点弯曲测试,以及湿法化学纤维体积含量的测定和显微切片检查的片材。关于机械性能,近线性增加,观察到增加的再循环的碳纤维的比例。在这种情况下为使用由RCF和GF的多材料无纺织物的电势可以被发现。据证实,RCF可能是经典的GF-应用适当的取代基。结果有助于扩大区域合作框架的性能范围,因而其可观的回收途径。

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