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通过电化学氧化和聚乙烯亚胺-羧甲基纤维素接枝改善长碳纤维增强聚酰胺6复合材料的界面粘附性

Improving the Interfacial Adhesion of Long Carbon Fiber-Reinforced Polyamide 6 Composites by Electrochemical Oxidation and Polyethylenimine-Carboxymethyl Cellulose Grafting.

作者信息

Gokce Emine C, Gungor Melike, Kilic Ali, Acma Mahmut Ercan

机构信息

Department of Metallurgical and Materials Engineering, Istanbul Technical University, 34469 Istanbul, Turkey.

Department of Textile Engineering, Istanbul Technical University, Istanbul 34437, Turkey.

出版信息

ACS Omega. 2024 Jul 18;9(30):32547-32556. doi: 10.1021/acsomega.4c01284. eCollection 2024 Jul 30.

Abstract

Carbon fiber (CF)-reinforced thermoplastic composites have notable ascents in various sectors and applications. For high-performance composites, strong interfacial adhesion between the polymer matrix and the CF is crucial. This is achieved by introducing functional groups on the CF surface. In this paper, a water-based surface treatment was applied to long carbon fibers to enhance the interfacial bonding with the polyamide 6 (PA6) matrix. For that, PEI and CMC were grafted onto the surface of carbon fibers after electrochemical oxidation. The PEI-CMC sizing reduced the carbon fiber/water contact angle to 26.42° from 111.69°. The clear improvement in wettability resulted in a 164.8% increase in the interfacial strength of 26.7 MPa after the application of PEI-CMC sizing on carbon fibers (CFs). The resultant tensile and flexural strength increased by 19.3 and 11.7% from 2009.6 and 378.3 MPa for desized CF/PA6 composites to 250.3 and 422.7 MPa for PEI-CMC-sized CF/PA6 composites, respectively. Moreover, the fractured surface morphologies were also investigated to confirm the enhancement of mechanical properties. The proposed one-step electrochemical oxidation and water-based sizing procedure is found to be promising for the production of high-performance long-fiber-reinforced thermoplastic composites.

摘要

碳纤维(CF)增强热塑性复合材料在各个领域和应用中都有显著提升。对于高性能复合材料而言,聚合物基体与CF之间强大的界面粘附力至关重要。这可通过在CF表面引入官能团来实现。本文对长碳纤维进行了水基表面处理,以增强其与聚酰胺6(PA6)基体的界面结合。为此,在电化学氧化后将聚乙烯亚胺(PEI)和羧甲基纤维素(CMC)接枝到碳纤维表面。PEI-CMC上浆使碳纤维与水的接触角从111.69°降至26.42°。润湿性的明显改善使得使得碳纤维(这使得)在碳纤维(CFs)上施加PEI-CMC上浆后,界面强度从26.7 MPa提高了164.8%。对于未上浆的CF/PA6复合材料,其拉伸强度和弯曲强度分别为2009.6和378.3 MPa,而对于PEI-CMC上浆的CF/PA6复合材料,拉伸强度和弯曲强度分别提高到250.3和422.7 MPa,分别提高了19.3%和11.7%。此外,还研究了断裂表面形态以确认力学性能的增强。所提出的一步电化学氧化和水基上浆工艺对于生产高性能长纤维增强热塑性复合材料具有广阔前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1704/11292808/2c58e5164d9f/ao4c01284_0001.jpg

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