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首页> 外文期刊>Composites Science and Technology >Enhanced mechanical and thermal performances of epoxy resin by oriented solvent-free graphene/carbon nanotube/Fe_3O_4 composite nanofluid
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Enhanced mechanical and thermal performances of epoxy resin by oriented solvent-free graphene/carbon nanotube/Fe_3O_4 composite nanofluid

机译:定向无溶剂石墨烯/碳纳米管/ Fe_3O_4复合纳米流体增强环氧树脂的机械和热性能

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摘要

In this work, we report a simple strategy for improving the mechanical and thermal performances of epoxy resin using a novel magnetic composite nanofluid as filler. The magnetic nanofluid, composed of multicomponent core of graphene oxide (GO)/carbon nanotube (MWCNTs)/Fe3O4 (GMF) and shell of polyether, is fabricated via a combination of ultrasonic assisted chemical coprecipitation process and post-modification. Subsequently, epoxy/GMF composite is prepared under magnetic field, in which the GMF nanoparticles are well dispersed in the epoxy resin matrix without obviously agglomeration and exhibit a directional arrangement along magnetic field, i.e., the GO sheets are induced to align parallel to the magnetic field direction, and the MWCNTs are uniformly dispersed on graphene sheets with the orientation along magnetic field, Fe3O4 nanoparticles are further encapsulated on GO/MWCNTs composites to form GMF core. The orientation degree of GMF is enhanced with an increase in the magnetic field strength. The results indicate that the Tg of composite material increases by 17 degrees C with increasing of GMF content. Moreover, the impact and bending performances of epoxy resin are apparently enhanced by 136.5% and 30.9% with the 1.5 wt% of oriented GMF nanofluid at 0.6 T. In addition, the epoxy/GMF composite exhibits an anisotropy in the thermal conductivity.
机译:在这项工作中,我们报告了一种使用新型磁性复合纳米流体作为填料改善环氧树脂机械性能和热性能的简单策略。通过超声辅助化学共沉淀工艺和后改性相结合的方法,制备了由氧化石墨烯(GO)/碳纳米管(MWCNTs)/ Fe3O4(GMF)的多组分核和聚醚壳组成的磁性纳米流体。随后,在磁场下制备环氧树脂/ GMF复合材料,其中GMF纳米颗粒很好地分散在环氧树脂基质中,没有明显的团聚,并且沿磁场方向排列,即,GO片被诱导平行于磁场排列。电场方向,MWCNTs沿磁场方向均匀地分散在石墨烯片上,Fe3O4纳米颗粒进一步封装在GO / MWCNTs复合材料上,形成GMF核。随着磁场强度的增加,GMF的取向度增加。结果表明,随着GMF含量的增加,复合材料的Tg增加了17℃。此外,在0.6 T下定向的GMF纳米流体的含量为1.5 wt%时,环氧树脂的冲击性能和弯曲性能明显提高了136.5%和30.9%。此外,环氧树脂/ GMF复合材料在导热性方面表现出各向异性。

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