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首页> 外文期刊>Macromolecules >CHAIN MOBILITY IN POLYMER SYSTEM - ON THE BORDERLINE BETWEEN SOLID AND MELT - 1 - LAMELLAR DOUBLING DURING ANNEALING OF POLYETHYLENE
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CHAIN MOBILITY IN POLYMER SYSTEM - ON THE BORDERLINE BETWEEN SOLID AND MELT - 1 - LAMELLAR DOUBLING DURING ANNEALING OF POLYETHYLENE

机译:聚合物体系中链的流动性-在固体与熔体间的边界上-聚乙烯退火过程中的层状加倍。

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In-situ small-angle X-ray scattering (SAXS) and low-frequency Raman spectroscopy experiments have been performed to study the mobility and motion of polymer chains upon annealing in a temperature range dose to but below the melting temperature. Ultrahigh molecular weight polyethylene, UHMW-PE, was taken as the model polymer, which was crystallized from solution. Regularly stacked lamellar crystals could be obtained after drying the solution-crystallized films. SAXS studies revealed that, upon heating above 110 degrees C, the lamellar thickness (long period) increases to twice the initial value. This quantum increase was confirmed by transmission electron microscopy (TEM). By means of in-situ low-frequency Raman spectroscopy it was observed that during heating a shift occurs in the longitudinal acoustic (LA) Raman frequency to lower values, indicative of an increase in the thickness of the crystalline core. The combined experimental observations indicate that thickening occurs via a mutual chain rearrangement between the adjacent lamellae involving a sliding motion along the chain axis to a doubling of the lamellar thickness. A model to explain the quantum increase, i.e., doubling, is proposed. [References: 44]
机译:已经进行了原位小角X射线散射(SAXS)和低频拉曼光谱实验,以研究聚合物链在等于或低于熔融温度的温度范围内退火后的迁移率和运动。将超高分子量聚乙烯UHMW-PE作为模型聚合物,将其从溶液中结晶出来。溶液结晶膜干燥后,可以得到规则堆叠的层状晶体。 SAXS研究表明,加热到110摄氏度以上时,层状厚度(长时间)增加到初始值的两倍。通过透射电子显微镜(TEM)证实了该量子增加。通过原位低频拉曼光谱法观察到,在加热过程中,纵向声(LA)拉曼频率发生了偏移,降低到较低的值,这表明结晶核的厚度增加了。综合的实验观察结果表明,增厚是通过相邻薄片之间的相互链重排而发生的,该重排涉及沿链轴的滑动运动至层状厚度的两倍。提出了一种解释量子增加即增加一倍的模型。 [参考:44]

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