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随机茂金属催化的丙烯与乙烯和1-己烯共聚物在快速冷却时的结晶

Crystallization of Random Metallocene-Catalyzed Propylene-Based Copolymers with Ethylene and 1-Hexene on Rapid Cooling.

作者信息

Mileva Daniela, Wang Jingbo, Androsch René, Jariyavidyanont Katalee, Gahleitner Markus, Bernreitner Klaus

机构信息

Borealis Polyolefine GmbH, Innovation Headquarters, Sankt Peterstrasse 25, 4021 Linz, Austria.

Interdisciplinary Center for Transfer-Oriented Research in Natural Sciences, Martin Luther University Halle-Wittenberg, 06099 Halle/Saale, Germany.

出版信息

Polymers (Basel). 2021 Jun 25;13(13):2091. doi: 10.3390/polym13132091.

Abstract

Propylene-based random copolymers with either ethylene or 1-hexene as comonomer, produced using a metallocene catalyst, were studied regarding their crystallization behaviors, with a focus on rapid cooling. To get an impression of processing effects, fast scanning chip calorimetry (FSC) was used in addition to the characterization of the mechanical performance. When comparing the comonomer type and the relation to commercial grades based on Ziegler-Natta-type catalysts, both an interaction with the catalyst-related regio-defects and a significant difference between ethylene and 1-hexene was observed. A soluble-type nucleating agent was found to modify the behavior, but to an increasingly lesser degree at high cooling rates.

摘要

研究了以乙烯或1-己烯为共聚单体、使用茂金属催化剂生产的丙烯基无规共聚物的结晶行为,重点关注快速冷却情况。为了解加工效果,除了对机械性能进行表征外,还使用了快速扫描芯片量热法(FSC)。在比较共聚单体类型以及与基于齐格勒-纳塔型催化剂的商业级产品的关系时,观察到与催化剂相关的区域缺陷存在相互作用,且乙烯和1-己烯之间存在显著差异。发现一种可溶型成核剂会改变其行为,但在高冷却速率下这种改变程度越来越小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb06/8272238/9153e45f4605/polymers-13-02091-g001.jpg

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