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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Effects of processing conditions on rheological, thermal, and electrical properties of multiwall carbon nanotube/epoxy resin composites
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Effects of processing conditions on rheological, thermal, and electrical properties of multiwall carbon nanotube/epoxy resin composites

机译:加工条件对多壁碳纳米管/环氧树脂复合材料流变,热和电性能的影响

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We report on the effect of processing conditions on rheology, thermal and electrical properties of nanocomposites containing 0.02-0.3 wt % multiwall carbon nanotubes in an epoxy resin. The influence of the sonication, the surface functionalization during mixing, as well as the application of external magnetic field (EMF) throughout the curing process was examined. Rheological tests combined with optical microscopy visualization are proved as a very useful methodology to determine the optimal processing conditions for the preparation of the nanocomposites. The Raman spectra provide evidence for more pronounced effect on the functionalized with hardener compositions, particularly by curing upon application of EMF. Different chain morphology of CNTs is created depending of the preparation conditions, which induced different effects on the thermal and electrical properties of the nanocomposites. The thermal degradation peak is significantly shifted towards higher temperatures by increasing the nanotube content, this confirming that even the small amount of carbon nanotubes produces a strong barrier effect for the volatile products during the degradation. The ac conductivity measurements revealed lower values of the percolation threshold (pc) in the range of 0.03-0.05 wt %. CNTs for the nanocomposites produced by preliminary dispersing of nanotubes in the epoxy resin, compared to those prepared by preliminary functionalization of the nanotubes in the amine hardener. This is attributed to the higher viscosity and stronger interfacial interactions of the amine hardener/CNT dispersion which restricts the reorganization of the nanotubes. The application of the EMF does not influence the pc value but the dc conductivity values (σdc) of the nanocomposites increased at about one order of magnitude due to the development of the aforementioned chain structure.
机译:我们报道了加工条件对环氧树脂中含有0.02-0.3 wt%的多壁碳纳米管的纳米复合材料的流变学,热学和电学性质的影响。考察了超声处理,混合过程中的表面功能化以及整个固化过程中施加的外部磁场(EMF)的影响。流变测试与光学显微镜可视化相结合被证明是确定制备纳米复合材料最佳工艺条件的非常有用的方法。拉曼光谱提供了对用硬化剂组合物官能化的效果更明显的证据,特别是通过在施加EMF时进行固化的效果。取决于制备条件,会产生不同的CNT链形态,从而对纳米复合材料的热和电性能产生不同的影响。通过增加纳米管的含量,热降解峰会显着移向更高的温度,这证实了即使在降解过程中,即使少量的碳纳米管也会对挥发性产品产生强大的阻隔作用。交流电导率测量结果表明,渗透阈值(pc)较低,为0.03-0.05 wt%。与通过将纳米管在胺固化剂中初步官能化制备的纳米复合材料的碳纳米管相比,通过将碳纳米管在环氧树脂中初步分散制得的碳纳米管。这归因于胺硬化剂/ CNT分散体的更高粘度和更强的界面相互作用,这限制了纳米管的重组。 EMF的应用不会影响pc值,但是由于上述链结构的发展,纳米复合材料的dc电导率值(σdc)大约增加了一个数量级。

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