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首页> 外文期刊>Science and Engineering of Composite Materials >Non-isothermal crystallization behavior of clay-reinforced polypropylene nanocomposites : Science and Engineering of Composite Materials
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Non-isothermal crystallization behavior of clay-reinforced polypropylene nanocomposites : Science and Engineering of Composite Materials

机译:粘土增强聚丙烯纳米复合材料的非等温结晶行为:复合材料的科学与工程

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摘要

In this study, the non-isothermal crystallization kinetics of polypropylene (PP) in the presence of nanoclay particles were investigated using differential scanning calorimetry (DSC) with various cooling rates varying from 0.5°C/min to 80°C/min. Such kinetics were compared with those obtained for the pure PP matrix. The modified Avrami analysis was used to describe the non-isothermal crystallization process. The results obtained indicate that the presence of nanoclay significantly affected the crystallization rate of the PP resin, since an increase of the crystallization temperature as the nanoclay content increased was observed. This was attributed to the nucleating ability of these particles. Moreover, it was seen that the increase of both the cooling rate and the nanoclay content decreased the Avrami exponent n, suggesting a change in the obtained crystalline shape. For the nanocomposite materials, as well as for neat PP, the mechanism of crystallization was found to undergo two transitions, at about 5°C/min and 40°C/min. This suggests that the surface-induced nucleation at the clay particles follows the same mechanisms as those of the complete spherulitic structure. However, a lower value of activation energy for crystallization was obtained as the clay content increased, confirming the nucleating effect of clay particles.
机译:在这项研究中,使用差示扫描量热法(DSC)研究了在纳米粘土颗粒存在下聚丙烯(PP)的非等温结晶动力学,其冷却速率从0.5°C / min到80°C / min不等。将这种动力学与纯PP基质获得的动力学进行比较。改进的Avrami分析用于描述非等温结晶过程。获得的结果表明,纳米粘土的存在显着影响PP树脂的结晶速率,因为观察到随着纳米粘土含量增加结晶温度升高。这归因于这些颗粒的成核能力。此外,可以看出,冷却速率和纳米粘土含量的增加均降低了Avrami指数n,表明获得的晶体形状发生了变化。对于纳米复合材料,以及对于纯聚丙烯,发现结晶机理经历了两个转变,分别为约5℃/ min和40℃/ min。这表明在粘土颗粒表面诱导的成核遵循与完整的球状结构相同的机理。然而,随着粘土含量的增加,获得了较低的结晶活化能值,证实了粘土颗粒的成核作用。

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