School of Mechanical, Aerospace, Chemical and Materials Engineering, Arizona State University, Tempe, Arizona 85287-6106, USA.
ACS Appl Mater Interfaces. 2009 Aug;1(8):1827-33. doi: 10.1021/am900376t.
A novel functionalization method for aramid fibers is developed to enhance the bonding of a ZnO nanowire interphase grown on the fiber surface for interfacial strength enhancement. The nanowire interphase functionally grades the typically discrete interface and reduces the stress concentration between the fiber and matrix. The functionalization process is developed to improve the bonding between the ZnO nanowires and the aramid fiber and is validated through Fourier transform IR and X-ray photoelectron spectroscopy studies. Mechanical testing shows significant improvement in the interfacial shear strength with no decrease in the base fiber strength. This is the only technique found in the literature for the growth of a nanowire interphase on polymer fibers for structural enhancement without degrading the in-plane properties of the bulk composite. Furthermore, it is firmly shown that the functionalization process is a necessary condition for enhanced interfacial strength, demonstrating that ZnO nanowires strongly interact with carboxylic acid functional groups.
开发了一种芳纶纤维的新型功能化方法,以增强生长在纤维表面上的 ZnO 纳米线相间层的键合,从而提高界面强度。纳米线相间层功能化了典型的不连续界面,降低了纤维和基体之间的应力集中。该功能化过程旨在改善 ZnO 纳米线与芳纶纤维之间的结合,并通过傅里叶变换红外和 X 射线光电子能谱研究进行了验证。力学测试表明,界面剪切强度有显著提高,而基体纤维强度没有降低。这是文献中唯一发现的在不降低整体复合材料平面内性能的情况下,在聚合物纤维上生长纳米线相间层以增强结构的技术。此外,还明确表明功能化过程是增强界面强度的必要条件,表明 ZnO 纳米线与羧酸官能团强烈相互作用。