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Carded Recycled Carbon Fiber Mats for the Production of Thermoset Composites via Infusion/Compression Molding

机译:通过输注/压缩成型梳理回收碳纤维垫,用于生产热固性复合材料

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The use of carbon fiber reinforced thermoset composites has doubled in the last decade raising questions about the waste generated from manufacturing and at end-of-life, especially in the aircraft industry. In this study, 2.5 cm long carbon fibers were recovered from thermoset composite waste using a commercial scale pyrolysis process. Scanning electron microscopy, density measurements, single filament tensile testing as well as micro-droplet testing were performed to characterize the morphology, mechanical properties, and surface adhesion of the fibers. The recycled fibers appeared to be mostly undamaged and clean, exhibiting comparable mechanical properties to virgin carbon fibers. A carding process followed by an ultrasound treatment produced randomly aligned recycled fiber mats. These mats were used to fabricate composite plates, with fiber volume fractions up to 40%, by infusion / compression molding. The mechanical properties of the plates were evaluated by tensile and flexural testing, and were found to be comparable to an equivalent containing virgin carbon fibers.
机译:在过去十年中,使用碳纤维增强热固性复合材料的使用翻了一番,提出了关于制造业和生活结束的废物的问题,特别是在飞机行业中。在本研究中,使用商业规模热解过程从热固性复合废物中回收2.5厘米长的碳纤维。进行扫描电子显微镜,密度测量,单长丝拉伸试验以及微液滴测试,以表征纤维的形态,机械性能和表面粘附。再循环的纤维似乎大多是未润润和清洁,对原始碳纤维具有相当的机械性能。梳理过程之后是超声处理,随机排列的再循环纤维垫。通过输注/压缩成型,将这些垫用于制造复合板,纤维体积分数至40%,其高达40%。通过拉伸和弯曲测试评估板的机械性能,并发现与含有维氏碳纤维的等同物相当。

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