R&D Office 1st, Korea Carbon Industry Promotion Agency, Jeonju 54852, Korea.
Department of Carbon-Nanomaterials Engineering, Jeonju University, Jeonju 55069, Korea.
Molecules. 2022 Sep 2;27(17):5663. doi: 10.3390/molecules27175663.
In this study, three recycling methods, namely, mechanical grinding, steam pyrolysis, and the supercritical solvent process, which are used to acquire recycled carbon fibers (RCFs), were compared for their application in synthesizing polymer-matrix composites. RCF-reinforced polyethylene (PE) composites were prepared to compare the mechanical properties of the composites generated using the three recycling methods. The PE/RCF composites exhibited 1.5 times higher mechanical strength than the RCF-reinforced PE composites, probably because of the surface oxidation effects during the recycling processes that consequently enhanced interfacial forces between the RCF and the matrix. Further, the steam pyrolysis process showed the highest energy efficiency and can thus be applied on a large production scale in domestic recycled CF markets.
在这项研究中,比较了三种回收方法,即机械研磨、蒸汽热解和超临界溶剂法,以获取回收碳纤维(RCF),并将其应用于合成聚合物基复合材料。制备了 RCF 增强聚乙烯(PE)复合材料,以比较使用这三种回收方法制备的复合材料的力学性能。PE/RCF 复合材料的机械强度比 RCF 增强 PE 复合材料高 1.5 倍,这可能是由于回收过程中的表面氧化作用,从而增强了 RCF 与基体之间的界面力。此外,蒸汽热解工艺显示出最高的能量效率,因此可以在国内回收 CF 市场的大规模生产中应用。