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聚乙烯在大过冷度下的结晶

Crystallization of Polyethylene at Large Undercooling.

作者信息

Zhuravlev Evgeny, Madhavi Vadlamudi, Lustiger Arnold, Androsch René, Schick Christoph

机构信息

Institute of Physics, University of Rostock, Wismarsche Str. 43-45, 18051 Rostock, Germany.

ExxonMobil Research & Engineering Company, 1545 Route 22 East, LD 152, Annandale, New Jersey 08801, United States.

出版信息

ACS Macro Lett. 2016 Mar 15;5(3):365-370. doi: 10.1021/acsmacrolett.5b00889. Epub 2016 Feb 23.

DOI:10.1021/acsmacrolett.5b00889
PMID:35614705
Abstract

Extremely fast crystallization of high-density polyethylene and random copolymers of ethylene with up to 16 mol % 1-octene was observed for the first time by ultrafast scanning calorimetry. In order to account for the inherently high crystallization rate of polyethylenes, in nonisothermal and isothermal crystallization experiments cooling rates up to 1 000 000 K/s and crystallization times as short as 10 μs, respectively, were employed. It was possible to supercool the melt of high-density polyethylene down to 57 °C and the melt of a random ethylene/1-octene copolymer with 16 mol % 1-octene down to -33 °C, without prior crystallization. At these temperatures, the characteristic time of the primary crystallization process is of the order of magnitude of 100 μs. Complete vitrification of the liquid would require cooling even faster than 1 000 000 K/s. Compared to the homopolymer, the cooling-rate dependence of the crystallization temperatures and the temperature dependence of the characteristic time of primary crystallization of random ethylene/1-octene copolymers both are nearly parallel shifted to lower temperatures. Fast crystallization under conditions of reduced linear crystal growth rate is possibly caused by boosting homogeneous nuclei density up to 10 m and urgently requires further investigation.

摘要

通过超快扫描量热法首次观察到了高密度聚乙烯以及乙烯与高达16摩尔% 1-辛烯的无规共聚物的极快速结晶现象。为了解释聚乙烯固有的高结晶速率,在非等温结晶实验和等温结晶实验中,分别采用了高达1000000 K/s的冷却速率和短至10 μs的结晶时间。高密度聚乙烯熔体可过冷至57 °C,含16摩尔% 1-辛烯的乙烯/1-辛烯无规共聚物熔体可过冷至-33 °C,且不会预先结晶。在这些温度下,初级结晶过程的特征时间约为100 μs。要使液体完全玻璃化,冷却速度需比1000000 K/s还要快。与均聚物相比,无规乙烯/1-辛烯共聚物的结晶温度对冷却速率的依赖性以及初级结晶特征时间对温度的依赖性都几乎平行地向更低温度偏移。在降低线性晶体生长速率的条件下快速结晶可能是由于将均相成核密度提高到10 m ,这迫切需要进一步研究。

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