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首页> 外文期刊>Journal of polymer engineering >NanoSiO_2 strengthens and toughens epoxy resin/basalt fiber composites by acting as a nano-mediator
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NanoSiO_2 strengthens and toughens epoxy resin/basalt fiber composites by acting as a nano-mediator

机译:NanoSiO_2通过充当纳米介体来增强和增韧环氧树脂/玄武岩纤维复合材料

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摘要

A new type of material was prepared by modifying epoxy/basalt fiber composites with nanoSiO(2). Mechanical tests showed that the nanoSiO(2) -modified epoxy/basalt fiber composites displayed significant improvement over the unmodified epoxy/basalt fiber composites in interlaminar shear strength and notch impact strength. Scanning electron microscopy revealed that the nanoSiO(2) was homogeneously dispersed in the epoxy matrix and adsorbed large numbers of epoxy molecules onto the surface. Many of the nanoSiO(2) -epoxy complexes tightly surrounded basalt fibers to form transition layers. Therefore, nanoSiO(2) can act as a nano-mediator to promote epoxy molecules to infiltrate between and bind to basalt fibers, which enhances the synergistic cooperation between epoxy and basalt fibers in resisting external forces. This study indicates that modification with nanoSiO(2) is an effective pathway to improve the performance of epoxy/ basalt fiber composites and broaden their application fields.
机译:通过用nanoSiO(2)改性环氧/玄武岩纤维复合材料,制备了一种新型材料。力学测试表明,纳米SiO(2)改性的环氧/玄武岩纤维复合材料在层间剪切强度和缺口冲击强度方面显示出比未改性的环氧/玄武岩纤维复合材料显着改善。扫描电子显微镜显示,nanoSiO(2)均匀地分散在环氧基质中,并在表面吸附了大量的环氧分子。许多nanoSiO(2)-环氧配合物紧密包围玄武岩纤维,形成过渡层。因此,nanoSiO(2)可以充当纳米介体,以促进环氧分子渗入玄武岩纤维并与玄武岩纤维结合,从而增强了环氧和玄武岩纤维在抵抗外力方面的协同作用。这项研究表明,用nanoSiO(2)进行改性是提高环氧/玄武岩纤维复合材料性能并拓宽其应用领域的有效途径。

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