4.5 Article

The Synergy Effect of Graphene/SiO2 Hybrid Materials on Reinforcing and Toughening Epoxy Resin

期刊

FIBERS AND POLYMERS
卷 17, 期 3, 页码 453-459

出版社

KOREAN FIBER SOC
DOI: 10.1007/s12221-016-5862-8

关键词

Graphene; SiO2 particles; Hybrid materials; Reinforcing and toughening; Mechanical properties

资金

  1. Cooperative Innovation Fund-Prospective Project of Jiangsu Province [BY2014023-14, BY2014023-15, BY2015019-33]
  2. Fundamental Research Funds for the Central Universities [JUSRP41501, JUSRP51505]
  3. National Key Technology R&D Program of the 12th Five-year Plan, Systematic Study on Engineering Integration of High Speed Maglev Transportation [2013BAG19B01]
  4. Graduate Education Innovation Project in Jiangsu Province [KYLX15_1182]

向作者/读者索取更多资源

Based on the situ preparation of silica nanoparticles (SiO2) on the surface of Graphene nanoplatelets (GNPs) in the previous work, these unique three dimensional (3D) materials were introduced into epoxy resin to study the reinforcing and toughening synergy effect on the composites. Firstly, the tensile tests showed that Graphene/SiO2 hybrid materials attached with different size of SiO2 particles exhibited different reinforcing and toughening effect on the composites. With the increasing of the diameter of SiO2 particles, the toughness and strength properties of the composites firstly improved and then decreased, and when the average diameter was 0.14 mu m, the elongation reached the max.. Meanwhile, the fractured surfaces presented on SEM images were consistent with the results of the tensile tests, which further explained the hybrid materials increased the interfacial adhesion between the fillers and matrix, leading to significant improvement in mechanical properties. Moreover, the DSC curves demonstrated that Graphene/SiO2 hybrid materials accelerated the curing process of epoxy resin due to the cross-link structure between fillers and matrix. Lastly, the crack propagation modes were built to clarify the synergy effect mechanism of reinforcing and toughening on nanoparticles/epoxy resin composites.

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