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首页> 外文期刊>Journal of Composites Science >Influences on Textile and Mechanical Properties of Recycled Carbon Fiber Nonwovens Produced by Carding
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Influences on Textile and Mechanical Properties of Recycled Carbon Fiber Nonwovens Produced by Carding

机译:梳理生产再生碳纤维非织造织物纺织和力学性能的影响

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Nonwovens made of recycled carbon fibers (rCF) and thermoplastic (TP) fibers have excellent economic and ecological potential. In contrast to new fibers, recycled carbon fibers are significantly cheaper, and the CO2 footprint is mostly compensated by energy savings in the first product life cycle. The next step for this promising material is its industrial serial use. Therefore, we analyzed the process chain from fiber to composite material. Initially, the rCF length at different positions during the carding process was measured. Thereafter, we evaluated the influence of the TP fibers on the processing, fiber shortening, and mechanical properties. Finally, several nonwovens with different TP fibers and fiber volume contents between 15 vol% and 30 vol% were produced, consolidated by hot-pressing, and tested by four-point bending to determine the mechanical values. The fiber length reduction ranged from 20.6% to 28.4%. TP fibers cushioned the rCF against mechanical stress but held rCF fragments back due to their crimp. The resulting bending strength varied from 301 to 405 MPa, and the stiffness ranged from 16.3 to 30.1 GPa. Design recommendations for reduced fiber shortening are derived as well as material mixtures that offer better homogeneity and higher mechanical properties.
机译:由再生碳纤维(RCF)和热塑性(TP)纤维制成的非织造织物具有优异的经济和生态潜力。与新的纤维相比,再循环碳纤维显着更便宜,并且CO2占地面积主要通过第一产品生命周期中的节能来补偿。该有前途的材料的下一步是其工业串行使用。因此,我们分析了从纤维到复合材料的过程链。最初,测量梳理过程中不同位置处的RCF长度。此后,我们评估了TP纤维对加工,纤维缩短和机械性能的影响。最后,产生具有不同TP纤维和纤维体积含量的几种非织物,通过热压固结,通过四点弯曲来固化,以确定机械值。纤维长度降低范围为20.6%至28.4%。 TP纤维将RCF抵抗机械应力,但由于其卷曲而持有RCF碎片。得到的弯曲强度从301到405MPa变化,刚度范围为16.3至30.1GPa。推导出用于减少纤维缩短的设计建议以及提供更好均匀性和更高的机械性能的材料混合物。

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