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首页> 外文期刊>High performance polymers >Preparation and characterization of polyphenylene sulfide/graphene nanoplatelets composite fibers with enhanced oxidation resistance
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Preparation and characterization of polyphenylene sulfide/graphene nanoplatelets composite fibers with enhanced oxidation resistance

机译:聚苯硫醚/石墨烯纳米孔复合纤维具有增强抗氧化性的制备及表征

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摘要

Composite masterbatches of polyphenylene sulfide (PPS) with functionalized graphene nanoplatelets (GNPs) were prepared by melt blending via a twin-screw extruder. The structure and morphology of composite masterbatches were characterized by scanning electron microscopy and X-ray diffraction analysis. The PPS/functionalized GNPs composite fibers were then manufactured by a self-made spinning equipment via melt spinning. The oxidation resistance and other properties of PPS composite fibers were also examined. The results showed that the pure PPS fibers exhibited smooth surface, whereas the surface of PPS/functionalized GNPs composite fibers was rough. The addition of functionalized GNPs could be acted as heterogeneous nucleating agents to improve the crystallization and increase the degree of crystallinity. The retention rate of breaking strength of PPS/functionalized GNPs composite fibers could maintain up to 85% after the oxidation treatment. The improvement in the oxidation resistance of PPS/functionalized GNPs composite fibers is the results of comprehensive effects characterized by the X-ray photoelectron spectroscopy analyses. The addition of functionalized GNPs could limit the damage of the C-S group and retard the generation of sulfuryl groups (-SO-) during the oxidation treatment. The chemical combination of the elements sulfur (S) and oxygen (O) could also be restricted, thus weakening the oxidation activity.
机译:通过通过双螺杆挤出机熔融共混制备具有官能化石墨烯纳米片(GNPS)的聚苯硫醚(PPS)的复合母料。通过扫描电子显微镜和X射线衍射分析表征复合母料的结构和形态。然后通过通过熔融纺丝通过自制纺丝设备制造PPS /官能化GNPS复合纤维。还检查了PPS复合纤维的氧化抗性和其他性能。结果表明,纯PPS纤维表现出光滑的表面,而PPS /官能化GNPS复合纤维的表面粗糙。官能化GNP的加入可以作为非均相成核剂,以改善结晶并增加结晶度。 PPS /官能化GNPS复合纤维的断裂强度的保留率可在氧化处理后保持高达85%。 PPS /官能化GNPS复合纤维的抗氧化性的改善是通过X射线光电子能谱分析的特征的综合效果的结果。官能化GNP的加入可以限制C-S基团的损伤,并在氧化处理期间延迟产生硫基( - SO-)。元素硫(S)和氧气(O)的化学组合也可以限制,从而削弱氧化活性。

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