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Recovery of carbon fibers from cured and uncured carbon fiber reinforced composites wastes and their use as feedstock for a new composite production

机译:从固化和未固化的碳纤维增强复合材料废料中回收碳纤维,并将其用作新复合材料生产的原料

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Cured and uncured scraps from manufacturing of epoxy based carbon fiber reinforced composites were treated with a pyrolytic process to provide, as solid residue, carbon fibers to be re-used in new composites production. The industrial scraps were pyrolyzed at different temperatures in a 70 kg batch pilot plant and the pyrolysis products (gas, oil, and solid) were fully characterized. The solid residue (carbon fibers covered by a carbonaceous layer) was subjected to a further oxidative step at 500 and 600 degrees C for different residence times to provide fibers devoid of any organic residue that did not volatilize during pyrolysis. The effects of both pyrolysis and oxidative process on the recovered fibers were evaluated by scanning electron microscopy and Raman Spectroscopy. The reinforcement behavior of pyrolyzed and pyrolyzed/oxidized chopped fibers, compared to virgin fibers, was tested in the production of new Chopped Carbon Fiber Reinforced Composites. The optimized double pyrolysis/oxidation process was found to provide fibers whose performance in the composites were comparable to the virgin ones. POLYM. COMPOS., 36:1084-1095, 2015. (c) 2015 Society of Plastics Engineers
机译:对来自环氧基碳纤维增强复合材料生产的固化和未固化的废料进行热解处理,以提供作为固体残留物的碳纤维,以重新用于新的复合材料生产中。工业废料在70 kg的分批中试装置中在不同温度下热解,并充分表征了热解产物(气体,石油和固体)。将固体残余物(被碳质层覆盖的碳纤维)在500和600摄氏度下进行进一步的氧化步骤,以进行不同的停留时间,以提供不含在热解过程中不会挥发的任何有机残余物的纤维。通过扫描电子显微镜和拉曼光谱法评估了热解和氧化过程对回收纤维的影响。与原始纤维相比,热解和热解/氧化短切纤维的增强性能已在新型短切碳纤维增强复合材料的生产中进行了测试。发现优化的双重热解/氧化工艺提供了其在复合材料中的性能与原始纤维相当的纤维。 POLYM。 COMPOS。,36:1084-1095,2015.(c)2015年塑料工程师学会

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