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同步加速器广角X射线衍射与快速扫描(芯片)量热法联用:关于高密度聚乙烯和聚酰胺11在高过冷度及高达200℃/s冷却速率下的(等温)结晶过程

Simultaneous Synchrotron WAXD and Fast Scanning (Chip) Calorimetry: On the (Isothermal) Crystallization of HDPE and PA11 at High Supercoolings and Cooling Rates up to 200 °C s(-1).

作者信息

Baeten Dorien, Mathot Vincent B F, Pijpers Thijs F J, Verkinderen Olivier, Portale Giuseppe, Van Puyvelde Peter, Goderis Bart

机构信息

Polymer Chemistry and Materials, KU Leuven, Celestijnenlaan 200F - box 2404, B-3001, Leuven, Belgium.

DUBBLE CRG BM26@ESRF, Netherlands Organization for Scientific Research, 71 Avenue des Martyrs, Grenoble, 38043, France.

出版信息

Macromol Rapid Commun. 2015 Jun;36(12):1184-91. doi: 10.1002/marc.201500081. Epub 2015 Apr 7.

DOI:10.1002/marc.201500081
PMID:25845310
Abstract

An experimental setup, making use of a Flash DSC 1 prototype, is presented in which materials can be studied simultaneously by fast scanning calorimetry (FSC) and synchrotron wide angle X-ray diffraction (WAXD). Accumulation of multiple, identical measurements results in high quality, millisecond WAXD patterns. Patterns at every degree during the crystallization and melting of high density polyethylene at FSC typical scanning rates from 20 up to 200 °C s(-1) are discussed in terms of the temperature and scanning rate dependent material crystallinities and crystal densities. Interestingly, the combined approach reveals FSC thermal lag issues, for which can be corrected. For polyamide 11, isothermal solidification at high supercooling yields a mesomorphic phase in less than a second, whereas at very low supercooling crystals are obtained. At intermediate supercooling, mixtures of mesomorphic and crystalline material are generated at a ratio proportional to the supercooling. This ratio is constant over the isothermal solidification time.

摘要

本文介绍了一种利用Flash DSC 1原型的实验装置,该装置可通过快速扫描量热法(FSC)和同步加速器广角X射线衍射(WAXD)同时研究材料。多次相同测量的累积可得到高质量的毫秒级WAXD图案。本文讨论了在FSC典型扫描速率为20至200 °C s(-1)的情况下,高密度聚乙烯结晶和熔化过程中每一度的图案,涉及温度和扫描速率相关的材料结晶度和晶体密度。有趣的是,这种组合方法揭示了FSC热滞后问题,对此可以进行校正。对于聚酰胺11,在高过冷度下的等温凝固在不到一秒的时间内产生介晶相,而在极低过冷度下则得到晶体。在中等过冷度下,会生成介晶和晶体材料的混合物,其比例与过冷度成正比。该比例在等温凝固时间内保持恒定。

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