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Controlling the orientation of semicrystalline polymers by crystallization in magnetic fields

机译:通过磁场中的结晶控制半结晶聚合物的取向

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Using X-ray scattering complemented by microscopic methods, we studied the alignment of a semicrystalline polymer-isotactic polystyrene-by crystallization in a high magnetic field (7 and 11 T). As reported previously, strong orientation of crystalline chain segments perpendicular to the magnetic field can be achieved. We present a method to determine the degree of orientation from the wide-angle X-ray scattering pattern in a quantitative way. The degree of orientation strongly depends on the crystallization temperature, allowing for nearly perfect orientation only at low supercooling. Furthermore, it is strongly influenced by the number of nuclei initiating spherulitic crystalline growth. Only for high nucleation density, such as that achieved by self-seeding, is strong macroscopic orientation obtained. Microscopic inspection of samples with a low number of nuclei shows that the magnetic field orients only the central part of large spherulites and the orientation is lost in the outer part of the spherulites; alignment takes place only in the initial stage of growth of a spherulite. The strong effect of the temperature of crystallization indicates a competition between orientation and growth. [References: 31]
机译:使用X射线散射并辅以显微镜方法,我们研究了在强磁场(7和11 T)下结晶产生的半结晶聚合物-等规聚苯乙烯的排列。如先前报道的,可以实现垂直于磁场的结晶链段的强取向。我们提出了一种以定量方式从广角X射线散射图确定取向度的方法。取向度在很大程度上取决于结晶温度,仅在过冷度较低的情况下才能实现几乎完美的取向。此外,它受到晶核起始球晶生长数量的强烈影响。仅对于高成核密度(例如通过自种获得的成核密度),才能获得强大的宏观取向。显微镜检查具有少量核的样品表明,磁场仅使大球晶的中心定向,而在球晶的外部失去定向;排列仅发生在球晶生长的初始阶段。结晶温度的强烈影响表明取向和生长之间存在竞争。 [参考:31]

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