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Crystallization/Melting Kinetics and Morphological Analysis of Polyphenylene Sulfide

机译:聚苯硫醚的结晶/熔化动力学和形态学分析

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摘要

Crystallization and melting kinetics of polyphenylene sulfide (PPS) are determined using fast scanning calorimetry. The temperature dependence of half-time crystallization of isothermally melt-crystallized PPS shows a downward convex curve with a minimum at 160 °C. The minimum crystallization half-time is about 3 s. The analysis of heating rate dependence of the melting temperature reveals a zero-entropy-production melting temperature of the sample. The microstructure of the sample, which is prepared by fast scanning calorimetry, is investigated by small-angle X-ray scattering and polarizing optical microscopy. The crystallinity and lamellar thickness of the sample annealed for 400 s decrease with decreasing crystallization temperature. The size of spherulites becomes small as the isothermal temperature is decreased. Transcrystalline morphology is observed near the surface between the sample and nitrogen gas at a crystallization temperature of 120 °C. The thickness of the transcrystalline layer disappears as the isothermal temperature is increased.
机译:使用快速扫描量热法测定聚苯硫醚(PPS)的结晶和熔融动力学。等温熔融结晶PPS的半时间结晶的温度依赖性显示出在160℃下最小的向下凸形曲线。半时间最小结晶是约3秒。熔融温度的加热速率依赖性分析显示了样品的零熵 - 生产熔化温度。通过小角度X射线散射和偏振光学显微镜来研究通过快速扫描量热法制制备的样品的微观结构。样品的结晶度和层状厚度随着结晶温度降低而导出的400次降低。随着等温度的降低,球晶的尺寸变小。在将样品和氮气的表面靠近120℃的结晶温度,观察到过晶形态。随着等温度的增加,经晶层的厚度消失。

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