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通过将聚多巴胺-碳纳米管接枝到聚对苯二甲酰对苯二胺纤维上增强与橡胶基体的界面粘附力

Enhancing the Interfacial Adhesion with Rubber Matrix by Grafting Polydopamine-Carbon Nanotubes onto Poly(p-phenylene terephthalamide) Fibers.

作者信息

Yang Xuan, Tu Qunzhang, Shen Xinmin, Yin Qin, Pan Ming, Jiang Chengming, Hu Caibing

机构信息

College of Field Engineering, Army Engineering University of PLA, Nanjing 210007, China.

出版信息

Polymers (Basel). 2019 Jul 24;11(8):1231. doi: 10.3390/polym11081231.

Abstract

To enhance the interfacial adhesion between poly(p-phenylene terephthalamide) (PPTA) fibers and a rubber matrix without damaging the fiber structures, aminated carbon nanotubes (NH-CNTs) were mildly deposited onto the fiber surface by combining the biomimetic modification of dopamine via the Michael addition reaction. Furthermore, differences between the "one-step" method and the "two-step" method were researched through adjusting the addition sequence of NH-CNTs. The surface morphologies and chemical structures of PPTA fibers before and after modification were characterized by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS). The mechanical properties of fibers and the adhesive properties with rubber were tested using an electronic tensile tester of single-filament and universal testing machine, respectively. After modification by the "one-step" method for 24 h, the single-filament tensile strength of the modified fibers increased by 16.5%, meanwhile, the pull-out force of the modified fibers to rubber increased by approximately 59.7%. Compared with the "two-step" method, the "one-step" method had superiority due to the short reaction time and the large deposition rate of CNTs.

摘要

为了增强聚对苯二甲酰对苯二胺(PPTA)纤维与橡胶基体之间的界面附着力,同时不破坏纤维结构,通过迈克尔加成反应结合多巴胺的仿生改性,将胺化碳纳米管(NH-CNTs)温和地沉积在纤维表面。此外,通过调整NH-CNTs的添加顺序,研究了“一步法”和“两步法”之间的差异。采用扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)对改性前后PPTA纤维的表面形貌和化学结构进行了表征。分别使用单丝电子拉伸试验机和万能试验机测试了纤维的力学性能以及与橡胶的粘合性能。采用“一步法”改性24小时后,改性纤维的单丝拉伸强度提高了16.5%,同时,改性纤维与橡胶之间的拔出力提高了约59.7%。与“两步法”相比,“一步法”具有反应时间短、碳纳米管沉积速率大的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c38/6722765/4d2d5a64fc2c/polymers-11-01231-g001.jpg

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