首页> 外文期刊>Journal of Applied Polymer Science >The influence of talc as a nucleation agent on the nonisothermal crystallization and morphology of isotactic polypropylene: The application of the Lauritzen-Hoffmann, Avrami, and Ozawa theories
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The influence of talc as a nucleation agent on the nonisothermal crystallization and morphology of isotactic polypropylene: The application of the Lauritzen-Hoffmann, Avrami, and Ozawa theories

机译:滑石粉作为成核剂对全同立构聚丙烯非等温结晶和形态的影响:Lauritzen-Hoffmann,Avrami和Ozawa理论的应用

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摘要

A new method is proposed, which can be used to analyze the influence of different additives and fillers on the nonisothermal crystallization of polymers. The composites of talc in isotactic polypropylene (i-PP) were prepared using a corotating twin-screw extruder. The compounds were subsequently dried and injection molded. PP morphology and talc dispersion were visualized using optical microscopy and computed tomography. Wide-angle X-ray scattering and small-angle X-ray scattering measurements provided an insight into the crystal structure of PP. The data obtained from nonisothermal DSC measurements were fitted to the Avrami model for the nonisothermal case. The calculated Avrami's exponent (n), which takes into account the influence of talc on the nucleation and growth of the PP crystals, was used in the combination of Lauritzen-Hoffman and Ozawa models to calculate the nucleation parameter (K _g). A good agreement was found between the model predictions and literature values. The examination shows that the developed model extension gives an expected trend in the case of i-PP filled with talcs from the same origin but with different particle sizes. Furthermore, it is shown that delaminated talc with a higher specific surface is more efficient in nucleation of i-PP. Thus, the introduced model extension could be a useful tool for comparing of nucleation ability of different additives in the crystallization of polymers.
机译:提出了一种新方法,可用于分析不同添加剂和填料对聚合物非等温结晶的影响。使用同向旋转双螺杆挤出机制备滑石在全同立构聚丙烯(i-PP)中的复合材料。随后将化合物干燥并注塑。使用光学显微镜和计算机断层扫描技术可以观察到PP的形态和滑石的分散。广角X射线散射和小角X射线散射测量提供了对PP晶体结构的了解。从非等温DSC测量获得的数据适用于非等温情况的Avrami模型。考虑到滑石粉对PP晶体成核和生长的影响,计算得出的Avrami指数(n)在Lauritzen-Hoffman模型和Ozawa模型的组合中用于计算成核参数(K _g)。在模型预测和文献值之间发现了很好的一致性。检查表明,在i-PP填充有相同来源但粒径不同的滑石的情况下,开发的模型扩展给出了预期的趋势。此外,显示出具有更高比表面的分层滑石在i-PP成核中更有效。因此,引入的模型扩展可能是比较聚合物结晶中不同添加剂成核能力的有用工具。

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