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Dielectric Spectroscopy of PP/MWCNT Nanocomposites: Relationship with Crystalline Structure and Injection Molding Condition

机译:PP / MWCNT纳米复合材料的介电光谱:与晶体结构和注塑条件的关系

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摘要

In this paper, we study the correlation between the dielectric behavior of polypropylene/multi-walled carbon nanotube (PP/MWCNT) nanocomposites and the morphology with regard to the crystalline structure, nanofiller dispersion and injection molding conditions. As a result, in the range of the percolation threshold the dielectric behavior shifts to a more frequency-independent behavior, as the mold temperature increases. Moreover, the position further from the gate appears as the most conductive. This effect has been associated to a modification of the morphology of the MWCNT clusters induced by both the flow of the molten polymer during the processing phase and the variation of the crystalline structure, which is increasingly constituted by γ-phase as the mold temperature increases. The obtained results allow one to understand the effect of tuning the processing condition in the frequency-dependent electrical behavior of PP/MWCNT injection-molded nanocomposites, which can be successfully exploited for an advanced process/product design.
机译:在本文中,我们研究了聚丙烯/多壁碳纳米管(PP / MWCNT)纳米复合材料的介质行为与晶体结构,纳米填充分散和注塑条件的形态之间的相关性。结果,在渗透阈值的范围内,随着模具温度的增加,电介质行为转变为更频率的无关行为。此外,从栅极进一步的位置看起来是最具导电的。这种效果与通过在加工相期间的熔融聚合物的流动和晶体结构的变化的变化来改变熔融聚合物的变化,其越来越多地由γ相增加而逐渐增加。所获得的结果允许人们了解在PP / MWCNT注塑纳米复合材料的频率依赖性电能中调节处理条件的效果,这可以成功地利用用于先进的工艺/产品设计。

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