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通过在碳纤维表面设计双聚合物接枝层改善聚芳硫醚砜与碳纤维之间的界面性能。

Improve the Interfacial Properties between Poly(arylene sulfide sulfone) and Carbon Fiber by Double Polymeric Grafted Layers Designed on a Carbon Fiber Surface.

作者信息

Zhang Tong, Fu Xiao-Bo, Leng Huai-Sen, Liu Sui-Lin, Long Sheng-Ru, Yang Jia-Cao, Zhang Gang, Wang Xiao-Jun, Yang Jie

机构信息

College of Polymer Science and Engineering, Sichuan University, Chengdu 610064, People's Republic of China.

Jiangsu JITRI Advanced Polymer Materials Research Institute Co., Ltd, Nanjing 210000, China.

出版信息

Langmuir. 2022 Sep 13;38(36):10975-10985. doi: 10.1021/acs.langmuir.2c01381. Epub 2022 Sep 1.

Abstract

Double polymeric grafted layer is constructed by two steps of chemical reaction, in which two polymers had been used, respectively polydopamine (PDA) film and modified PASS (NH-PASS) resin containing amine group, as the interphase in carbon fiber reinforced poly(arylene sulfide sulfone) (PASS) composite (CF/PASS) to work on enhancing the interfacial property. All the test results of chemical components and chemical structures on the carbon fiber surface show that the double polymeric grafted layer was constructed successfully with PDA and NH-PASS chains. And obvious characteristics of thin PDA film and a polymer layer can be clearly seen in the morphology of modified carbon fiber. In addition to this, the obvious interphase and change in the thickness of interphase have been observed in the modulus distribution images of CF/PASS. The final superb performance is achieved by PASS composites with a double polymeric grafted layer, 27.2% and 198.6% superior to the original PASS composite for IFSS and ILSS, respectively. Moreover, the result also indicates that constructing a double polymeric grafted layer on a carbon fiber surface is a promising technique to modify carbon fiber for processing high-performance advanced thermoplastic composites and is more environmental friendly as well as convenient.

摘要

双聚合物接枝层通过两步化学反应构建而成,其中分别使用了两种聚合物,即聚多巴胺(PDA)薄膜和含胺基的改性聚芳硫醚砜(NH-PASS)树脂,作为碳纤维增强聚芳硫醚砜(PASS)复合材料(CF/PASS)中的界面相,以增强界面性能。对碳纤维表面化学成分和化学结构的所有测试结果表明,成功构建了由PDA和NH-PASS链组成的双聚合物接枝层。在改性碳纤维的形态中可以清楚地看到薄PDA薄膜和聚合物层的明显特征。除此之外,在CF/PASS的模量分布图中观察到了明显的界面相和界面相厚度的变化。具有双聚合物接枝层的PASS复合材料实现了最终的优异性能,其界面剪切强度(IFSS)和层间剪切强度(ILSS)分别比原始PASS复合材料高出27.2%和198.6%。此外,结果还表明,在碳纤维表面构建双聚合物接枝层是一种很有前景的技术,可用于改性碳纤维以制备高性能先进热塑性复合材料,而且更环保、更便捷。

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