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Transcrytalline Structures and Crystallization Kinetics of Polyarylate/Nylon6 Islands-in-a-Sea Conjugate Fibers for High Performance Thermoplastic Composite Applications

机译:高性能热塑性复合材料中聚芳酯/尼龙6海岛共轭纤维的透晶结构和结晶动力学

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摘要

We report the isothermal and non-isothermal crystallization kinetics and associated transcrystalline morphological features of polyarylate(PAR)ylon6 islands-in-a-sea fibers, where 74 PAR islands serve as reinforcing fibers and nylon6 sea component acts as a semicrystalline matrix in final thermoplastic composites. The temperature-dependent polarized optical microscopic images obtained during a cooling process exhibit that the melt-crystallization is dominated by the interfacial crystallization of nylon6 on the surface of PAR fibers, leading to developing a transcrystalline structure. From the isothermal and non-isothermal melt-crystallization analyses of the islands-in-a sea fiber by using differential scanning calorimetry and the Avrami equation, the overall crystallization rates of the nylon6 sea component in the islands-in-a-sea fiber are found to be highly accelerated by the heterogeneous nucleating effect of the PAR island fibers. In addition, it is revealed that the isothermal and non-isothermal melt-crystallization kinetics of the nylon6 in the islands-in-a-sea fibers consists of two different mechanisms of the primary crystallization owing to the interfacial crystallization and the secondary crystallization due to the bulk crystallization.
机译:我们报告了一个海洋纤维中的聚芳酯(PAR)/尼龙6岛的等温和非等温结晶动力学以及相关的跨晶形态学特征,其中74个PAR岛用作增强纤维,而尼龙6海组分在最终纤维中充当半结晶基质热塑性复合材料。在冷却过程中获得的随温度变化的偏振光学显微图像显示,熔融结晶主要由PAR纤维表面尼龙6的界面结晶所致,从而形成了跨晶结构。通过使用差示扫描量热法和Avrami方程对海中岛纤维进行等温和非等温熔体结晶分析,海中岛纤维中尼龙6海组分的总结晶速率为PAR岛纤维的异质成核作用可显着促进这种作用。此外,揭示了海岛型纤维中尼龙6的等温和非等温熔体结晶动力学由界面结晶和二次结晶的两种不同机理组成。大量结晶。

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