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首页> 外文期刊>Journal of Materials Science >An investigation of the structure–property relationships in melt-processable high-acrylonitrile copolymer filaments
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An investigation of the structure–property relationships in melt-processable high-acrylonitrile copolymer filaments

机译:可熔融加工的高丙烯腈共聚物长丝结构与性能关系的研究

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A comprehensive investigation was undertaken to understand why the structure of a high-acrylonitrile (AN) resin renders it melt processable, how it affects the microstructure, and what filament properties it supports. High-AN homo- and copolymers have excellent chemical and ultraviolet light resistances that make them suited for many engineered industrial applications. Traditionally, these AN-copolymers are dissolved in a solvent and extruded into fibers by dry and wet spinning, because they tend to degrade rather than melt. Recent advances in copolymer synthesis have created the first AN-resins that can be melt processed, and, are produced more economically and in an environmentally friendly way. The block distributions were examined using solution nuclear magnetic resonance. Thermal behavior of the solid-to-ductile transitions was observed with differential scanning calorimetry to gain insight into the nature of the temperature-dependent solid-state interactions between chains. Filament extrusion was conducted utilizing a range of parameters to obtain filaments varying in structures and properties. Wide-angle X-ray diffraction was used to gain insight into the solid-state conformations and organization of the copolymer chains. It is concluded that melt-extruded filaments do not develop a distinct semi-crystalline morphology, but instead tend to develop a paracrystalline ordered structure. Mechanical properties can be varied, and under optimal conditions, compare favorably with those found in other melt-extruded polymer fibers that are not, resistant to chemical and UV exposure.
机译:进行了全面的调查,以了解高丙烯腈(AN)树脂的结构为何使其可熔融加工,如何影响其微观结构以及所支持的长丝性能。高AN均聚物和共聚物具有出色的耐化学性和耐紫外线性,使其非常适合许多工程工业应用。传统上,这些AN共聚物溶解在溶剂中并通过干法和湿法纺丝挤出成纤维,因为它们倾向于降解而不是熔融。共聚物合成的最新进展创造了第一种可以熔融加工的AN树脂,并且可以更经济,更环保地生产。使用溶液核磁共振检查了嵌段分布。用差示扫描量热法观察了固态到延性转变的热行为,以了解链之间温度依赖性固态相互作用的性质。利用一系列参数进行长丝挤出以获得结构和性能变化的长丝。广角X射线衍射用于深入了解共聚物链的固态构型和组织。结论是,熔融挤出的长丝没有形成明显的半结晶形态,而是倾向于形成顺晶有序结构。机械性能可以变化,并且在最佳条件下,可以与其他不耐化学和紫外线照射的熔融挤出聚合物纤维中的机械性能相比较。

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