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Non-isothermal crystallization of polypropylene with sorbitol-type nucleating agents at cooling rates used in processing

机译:聚丙烯的非等温结晶与山梨糖型成核剂在加工中使用的冷却速率

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摘要

Sorbitol-type nucleating agents used as clarifiers for polypropylene (PP) show a complex interplay of phase and crystallization behavior. To study the crystallization behavior, cooling measurements were performed by fast scanning calorimetry using rates between 10 and 4000 K s(-1). These rates correspond to cooling rates used in processing. These measurements were combined with conventional differential scanning calorimetry (DSC) measurements at 10 K min(-1). The optical properties were characterized by haze measurements. For this investigation the commercially available clarifiers 1,3:2,4-bis(3,4-dimethylbenzylidene)sorbitol and 1,2,3-tridesoxy-4,6:5,7-bis-O-[(4-propylphenyl)methylene]nonitol were added to PP in various amounts up to 0.6 wt%. At relatively slow cooling rates only a single crystallization process was observed. In contrast, fast cooling leads to a complex crystallization behavior with up to four different crystallization processes. It was found that the temperature of the main crystallization process during fast cooling correlates with the optical properties from haze measurements. Finally, the cooling rate dependence of the different crystallization processes is discussed in terms of nucleating efficiency of the clarifiers. We conclude that the results of conventional DSC measurements cannot be extrapolated in a simple way to describe the nucleation activity of nucleating agents at cooling conditions relevant during processing. (c) 2018 Society of Chemical Industry
机译:用作聚丙烯(PP)澄清剂的山梨糖型成核剂显示出相位和结晶行为的复杂相互作用。为了研究结晶行为,通过使用10至4000ks(-1)之间的速率快速扫描量热法进行冷却测量。这些速率对应于加工中使用的冷却速率。将这些测量结果与10kmin(-1)的常规差示扫描量热法(DSC)测量组合。通过雾度测量表征光学性质。对于该研究,市售的澄清剂1,3:2,4-双(3,4-二甲基苄基)山梨糖醇和1,2,3-三相氧基-4,6:5,7-BIS-O - [(4-丙基苯基)将非催化剂加入到PP中,各种量高达0.6wt%。在相对缓慢的冷却速率下,观察到单个结晶过程。相反,快速冷却导致复合结晶行为,最多四种不同的结晶过程。发现在快速冷却期间主要结晶过程的温度与来自雾度测量的光学性质相关。最后,在澄清剂的成核效率方面讨论了不同结晶过程的冷却速率。我们得出结论,常规DSC测量结果不能以简单的方式推断,以描述在加工期间相关的冷却条件下核切割剂的成核活性。 (c)2018化学工业协会

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