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Flow induced orientation of multiwalled carbon nanotubes in polycarbonate nanocomposites: rheology, conductivity and mechanical properties

机译:聚碳酸酯纳米复合材料中多壁碳纳米管的流动诱导取向:流变性,电导率和机械性能

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摘要

We investigated the effect of flow field and deformation rate on the nanotube alignment and on the properties of PC/multiwalled carbon nanotube nanocomposites. Samples of various MWCNT loadings were prepared by diluting a commercial masterbatch containing 15 wt% nanotubes using optimized melt mixing conditions. Different processing conditions were then used to systematically change the degree of nanotube alignment, from random orientation to highly aligned. Morphological studies and Raman spectroscopy analysis revealed that the nanotubes are preferentially aligned in the flow direction, particularly at large injection or compression rates. Rheological measurements corresponding to high shear rate conditions showed drastic changes in the viscoelastic behavior. The complex viscosity significantly decreased and percolation threshold notably rose. High degrees of nanotube alignment also resulted in a significant increase in the electrical percolation threshold. The mechanical properties of the nanocomposites for different nanotube loadings were also shown to depend on the processing conditions, and somehow improved when the material was processed at higher rates. Finally, we used a power-law type equation to correlate the percolation behavior and the nanotube alignment. The estimated percolation threshold and the power index, q, significantly increase with the degree of nanotube alignment as determined by Raman analysis.
机译:我们研究了流场和变形速率对纳米管排列和PC /多壁碳纳米管纳米复合材料性能的影响。通过使用优化的熔融混合条件稀释包含15 wt%纳米管的商业母料,制备了各种MWCNT负载量的样品。然后使用不同的处理条件来系统地改变纳米管排列的程度,从随机排列到高度排列。形态学研究和拉曼光谱分析表明,纳米管在流动方向上优先排列,特别是在大注射或压缩速率下。与高剪切速率条件相对应的流变学测量表明,粘弹性行为发生了急剧变化。复数粘度显着降低并且渗滤阈值显着升高。纳米管的高度对准还导致电渗漏阈值的显着增加。还显示了纳米复合材料对于不同纳米管负载的机械性能取决于加工条件,并且当以更高的速率加工该材料时,其机械性能有所改善。最后,我们使用幂律类型方程式将渗透行为与纳米管排列相关联。估计的渗滤阈值和功率指数q随着拉曼分析确定的纳米管排列程度而显着增加。

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