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The Effect of Hybridized Carbon Nanotubes, Silica Nanoparticles, and Core-Shell Rubber on Tensile, Fracture Mechanics and Electrical Properties of Epoxy Nanocomposites

机译:碳纳米管,二氧化硅纳米颗粒和核壳橡胶杂化对环氧树脂纳米复合材料的拉伸,断裂力学和电性能的影响

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The paper investigates the effect of adding a combination of rigid nanoparticles and core-shell rubber nanoparticles on the tensile, fracture mechanics, electrical and thermo-mechanical properties of epoxy resins. SiO 2 nanoparticles, multi-walled carbon nanotubes (MWCNT’s), as rigid nanofillers, and core-shell rubber (CSR) nanoparticles, as soft nanofillers were used with bisphenol-A-based epoxy resin. Further, the rigid fillers were added systematically with core-shell rubber nanoparticles to investigate the commingled effect of rigid nanofillers and soft CSR nanoparticles. The resulting matrix will be broadly evaluated by standard methods to quantify tensile, fracture mechanics, electrical, and thermal properties. The results show that the electrical conductivity threshold is obtained at 0.075 wt. % for MWCNT-modified systems. For hybrid systems, the maximum increase of fracture toughness (218%) and fracture energy (900%) was obtained for a system containing 5 wt. % of CSR and 10 wt. % of SiO 2 . The analysis of the fracture surfaces revealed the information about existing toughening micro-mechanisms in the nanocomposites.
机译:本文研究了添加刚性纳米颗粒和核-壳橡胶纳米颗粒的组合对环氧树脂的拉伸,断裂力学,电气和热机械性能的影响。 SiO 2纳米颗粒,作为刚性纳米填料的多壁碳纳米管(MWCNT)和作为软纳米填料的核壳橡胶(CSR)纳米颗粒与双酚A基环氧树脂一起使用。此外,将刚性填料与核壳橡胶纳米粒子系统地添加在一起,以研究刚性纳米填料和软CSR纳米粒子的混合作用。所得基质将通过标准方法进行广泛评估,以量化拉伸,断裂力学,电学和热学性质。结果表明,在0.075 wt。%处获得电导率阈值。 MWCNT改性系统的%。对于混合动力系统,对于含5 wt。%重量的系统,其断裂韧性(218%)和断裂能(900%)最大增加。 CSR%和10 wt。 SiO 2的%。断裂表面的分析揭示了有关纳米复合材料中现有的增韧微机制的信息。

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