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Adhesion and Mechanical Property Characterization of Reactive Graphitic Nanofibers Reinforced Epoxy as Composite Matrix

机译:反应性粒状纳米纤维增强环氧树脂作为复合基体的黏着力和力学性能表征

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Ultra high molecular weight polyethylene (UHMWPE) fibers can be effective for shielding materials against galactic cosmic rays (GCR) and solar energetic particles due to their advanced mechanical properties and excellent shielding properties. Unfortunately, the poor interfacial adhesion in UHMWPE fiber/polymer matrix hinders the structural integrity and restricts the effectiveness of radiation shielding for application. Our preliminary research on processing technology and wetting properties of the reactive graphitic nanofibers (r-GNFs) reinforced epoxy as a composite matrix has shown that there is an improved wetting property of UHMWPE fibers with matrix in which r-GNFs were dispersed. In this study, the adhesion and mechanical properties of reactive graphitic nanofibers matrix were investigated.The commercial bisphenol A based epoxy resin, and an amine type curing agent were used to form the composite matrix. Both single-end and double-end bundle fiber pullout methods were designed and tested for characterization of adhesion property between UHMWPE fiber and nano-matrix. Three-point-bending specimens were prepared for mechanical property characterization. The results showed that the adhesion of nano-matrix to UHMWPE fiber was improved effectively. Furthermore, there was an enhancement in mechanical property of the nano-matrix.
机译:超高分子量聚乙烯(UHMWPE)纤维具有先进的机械性能和出色的屏蔽性能,可有效屏蔽银河宇宙射线(GCR)和太阳高能粒子。不幸的是,UHMWPE纤维/聚合物基质中不良的界面粘合性阻碍了结构完整性,并限制了辐射屏蔽在应用中的有效性。我们对活性石墨纳米纤维(r-GNFs)增强环氧树脂作为复合基质的加工技术和润湿性能的初步研究表明,分散有r-GNFs的UHMWPE纤维的润湿性能得到了改善。在这项研究中,研究了反应性石墨纳米纤维基体的附着力和力学性能。 使用市售的双酚A类环氧树脂和胺类固化剂来形成复合基质。设计并测试了单端和双端束纤维拉出方法,以表征UHMWPE纤维与纳米基质之间的粘合性能。准备了三点弯曲的试样用于力学性能表征。结果表明,纳米基质对UHMWPE纤维的附着力得到了有效改善。此外,纳米基质的机械性能有所提高。

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