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Nucleation and Crystallization of Polymer/MWCNT Nanocomposites

机译:聚合物/ MWCNT纳米复合材料的成核和结晶

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Isothermal and non-isothermal crystallization behavior of polymers can be investigated with traditional calorimeters often in a limited temperature region only. This results from the fast crystallization processes on optimal conditions, which appears in most polymers in a few seconds or less. The chip-based fast scanning DSCs allow applying heating and cooling rates of several 1000 K/s, which enables for many polymers to follow crystallization in the whole temperature range between glass transition temperature and melting temperature. We applied the new chip calorimeters for the investigation of crystallization kinetics of PET, PBT, PCL and their MWCNT composites with different filler contents under non-isothermal and isothermal conditions. The MWCNT act as nucleating agents for all three polymers and speed up crystallization at high temperatures, where heterogeneous nucleation dominates, for about one order of magnitude. At low temperatures, where homogeneous nucleation can be assumed, crystallization kinetics is independent on filler content. Detailed investigation of cold crystallization after different annealing procedures allows the determination of kinetics of nucleation too and will be discussed for PCL and its composites.
机译:可以在仅在有限的温度区域中使用传统量热计研究聚合物的等温和非等温结晶行为。这由快速结晶过程得到最佳条件,在几秒钟或更短的情况下出现在大多数聚合物中。基于芯片的快速扫描DSC允许施加几千k / s的加热和冷却速率,这使得许多聚合物能够在玻璃化转变温度和熔化温度之间的整个温度范围内遵循结晶。我们在非等温和等温条件下,应用了新的芯片量热计进行了PET,PBT,PCL及其MWCNT复合材料的不同填料含量。 MWCNT作为所有三种聚合物的成核剂,并在高温下加速结晶,其中异质成核占主导地位,大约一个数量级。在低温下,可以假设均匀成核的情况下,结晶动力学对填料含量无关。不同退火程序后冷结晶的详细研究允许测定成核的动力学,并将讨论PCL及其复合材料。

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