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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Epoxy nanocomposites containing magnetite-carbon nanofibers aligned using a weak magnetic field
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Epoxy nanocomposites containing magnetite-carbon nanofibers aligned using a weak magnetic field

机译:包含磁铁矿-碳纳米纤维的环氧树脂纳米复合材料,通过弱磁场排列

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摘要

Novel magnetite-carbon nanofiber hybrids (denoted by "Fe3O4@CNFs") have been developed by coating carbon nanofibers (CNFs) with magnetite nanoparticles in order to align CNFs in epoxy using a relatively weak magnetic field. Experimental results have shown that a weak magnetic field (similar to 50 mT) can align these newly-developed nanofiber hybrids to form a chain-like structure in the epoxy resin. Upon curing, the epoxy nanocomposites containing the aligned Fe3O4@CNFs show (i) greatly improved electrical conductivity in the alignment direction and (ii) significantly higher fracture toughness when the Fe3O4@CNFs are aligned normal to the crack surface, compared to the nanocomposites containing randomly-oriented Fe3O4@CNFs. The mechanisms underpinning the significant improvements in the fracture toughness have been identified, including interfacial debonding, pull-out, crack bridging and rupture of the Fe3O4@CNFs, and plastic void growth in the polymer matrix. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:通过用磁铁矿纳米颗粒涂覆碳纳米纤维(CNF)以利用相对弱的磁场使CNF在环氧树脂中排列,已经开发出新型的磁铁矿-碳纳米纤维杂化物(以“ Fe3O4 @ CNFs”表示)。实验结果表明,弱磁场(类似于50 mT)可以使这些新开发的纳米纤维杂化体排列在一起,从而在环氧树脂中形成链状结构。固化后,与含有Fe3O4 @ CNFs的纳米复合材料相比,含有Fe3O4 @ CNFs的环氧纳米复合材料显示(i)沿取向方向的导电性大大提高,以及(ii)当Fe3O4 @ CNFs垂直于裂缝表面取向时,断裂韧性明显提高。随机取向的Fe3O4 @ CNFs。已经确定了断裂韧性显着改善的基础机理,包括Fe3O4 @ CNFs的界面剥离,拉出,裂纹桥接和断裂,以及聚合物基体中的塑性空隙增长。 (C)2015作者。由Elsevier Ltd.发布

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