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Relationship between magnetic alignment and the crystallization condition of isotactic polystyrene

机译:等规聚苯乙烯的磁取向与结晶条件的关系

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The relationship between a magnetic alignment and crystallization conditions of isotactic polystyrene (iPS) was studied by means of DSC, POM, WAXD, FT-IR, and birefringence measurements. The onset temperature for crystallization during the cooling process was found to depend on the melting temperature. From observations using a polarized optical microscope, the proportion of spherulite decreased in cases where melting occurred at greater than 265?°C. These results suggest that melting at less than 265?°C causes self-seeding, which is known as the 'melt memory effect' in iPS, leading to a high nucleation density. The maximum intensity of transmitted light that could be observed by birefringence measurements was also dependent on the melting temperature. The high nucleation density that was obtained by melting at less than 265?°C was suitable for achieving higher orientations. In situ infrared measurements in a magnetic field were carried out in a home-built apparatus into which an autorotation polarizer unit had been installed. This allowed us to automatically acquire simultaneous polarized infrared spectra both parallel and perpendicular to the magnetic field. Orientation was confirmed for the crystalline band, while no orientation was observed for the amorphous band. The dichroic difference increased during isothermal crystallization with increasing crystallinity. No orientation effects were observed in the melted state in the present study.
机译:通过DSC,POM,WAXD,FT-IR和双折射测量研究了等规聚苯乙烯(iPS)的磁取向与结晶条件之间的关系。发现冷却过程中结晶的起始温度取决于熔融温度。从使用偏光光学显微镜的观察结果来看,如果熔化温度超过265℃,球晶的比例就会降低。这些结果表明,在低于265°C的温度下熔化会导致自种,这在iPS中被称为“熔化记忆效应”,从而导致高的成核密度。通过双折射测量可以观察到的透射光的最大强度还取决于熔化温度。通过在低于265℃的温度下熔融而获得的高成核密度适合于实现更高的取向。在装有自动旋转偏振器单元的家用设备中进行磁场中的红外原位测量。这使我们能够自动获取与磁场平行和垂直的同时偏振的红外光谱。结晶带的取向得到确认,而非晶带没有取向。在等温结晶过程中,随着结晶度的增加,二向色性差异增加。在本研究中,在熔融状态下未观察到取向效应。

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