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The thermal behaviour and isothermal crystallisation of cyclic poly(butylene terephthalate)and its blends

机译:环状聚(对苯二甲酸丁二醇酯)及其共混物的热行为和等温结晶

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摘要

This thesis concerns the thermal behaviour and isothermal crystallisation kinetics study of cyclic polyesters and its blends, in particular cyclic poly (butylene terephthalate) (c-PBT). The production of c-PBT is interesting; in fact it is different from production of conventional linear PBT since c-PBT is produced by in situ polymerisation of cyclic butylene terephthalate oligomers (CBT) in the presence of suitable initiators or catalysts. These relatively novel materials, i.e. CBT offer many advantages in properties and the most unusual and useful is that they can be processed at low viscosity (water like) and exhibit rapid crystallisation. The thermal behaviour and isothermal crystallisation kinetics of CBT and c-PBT were analysed. The most significant achievement of this project is blending where blends of c-PBT and styrene maleimide (SMI) were prepared by simultaneous in situ polymerisation and melt blending of solid dispersion CBT/SMI powder. This is unique and novel and the results show consistency and signs of miscibility although there are no external forces applied during the melt blending. It was found that the presence of 30 wt % and above of SMI impeded the crystallisation of c-PBT. This suggests that miscibility occurred. The miscibility of these c-PBT/SMI blends was support with the presence of a single composition-dependent glass transition temperature and negative Flory-Huggins interaction parameter. Studies on crystallisation kinetics of c-PBT were also done by Avrami analysis and using the Hoffman-Lauritzen theory. Previously there have been very limited studies of the crystallisation kinetics of PBT produced from its oligomer. Further work on crystallisation of c-PBT/SMI blends was also performed.
机译:本文涉及环状聚酯及其共混物,特别是环状聚对苯二甲酸丁二醇酯(c-PBT)的热行为和等温结晶动力学研究。 c-PBT的生产很有趣。实际上,它与常规线性PBT的生产不同,因为c-PBT是在合适的引发剂或催化剂的存在下通过环对苯二甲酸丁二醇酯低聚物(CBT)的原位聚合制备的。这些相对新颖的材料,即CBT,在性能上具有许多优点,最不寻常和最有用的是它们可以在低粘度(像水一样)下加工并表现出快速结晶。分析了CBT和c-PBT的热行为和等温结晶动力学。该项目最重要的成就是共混,其中通过同时原位聚合和固态分散CBT / SMI粉末的熔融共混来制备c-PBT和苯乙烯马来酰亚胺(SMI)的共混物。这是独特而新颖的,尽管在熔融共混过程中没有施加外力,但结果显示出一致性和可混溶性的迹象。发现30重量%以上的SMI的存在阻碍了c-PBT的结晶。这表明发生了混溶。这些c-PBT / SMI共混物的混溶性得到了支持,其中存在单一的成分依赖性玻璃化转变温度和负的Flory-Huggins相互作用参数。 c-PBT结晶动力学的研究也通过Avrami分析并使用Hoffman-Lauritzen理论进行。以前,关于由其低聚物产生的PBT的结晶动力学的研究非常有限。还进行了有关c-PBT / SMI共混物结晶的进一步工作。

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  • 作者

    Samsudin Sani Amril;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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