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Influence of Polyphenylene Sulfide on Plasticization and Toughening of Polyarylene Ether Nitrile/Polyphenylene Sulfide Blends

机译:聚苯硫醚对聚亚芳基醚丁腈/聚苯硫醚共混物的增塑和增韧的影响

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Polyarylene ether nitrile (PEN)/polyphenylene sulfide (PPS) blends were prepared via a melt-mixing process. The melting flow properties, compatibility, thermal and mechanical properties were characterized by melting index test, dynamic mechanical analysis (DMA), thermal analysis, tensile test and the fracture suface morphologies. The melt-mixed PEN/PPS blends displayed the excellent melting flow properties during processing. With the content of the PPS increased in the PEN, the melting index of the blends increased considerably, which is beneficial to the processability of PEN. PPS was found to be incompatible with the PEN by the DMA and DSC results. Morphology examinations reveal that the PPS phase is randomly dispersed as droplets with an average size of about 1~2 μm in PEN matrix, which is the main reason to enhance the toughness of PEN. Importantly, the blending materials maintained the characteristic thermal and thermo-oxidative stability as well as mechanical properties of the PEN as considering the further commercial applications.
机译:通过熔融混合方法制备聚亚芳基醚腈(笔)/聚苯硫醚(PPS)共混物。通过熔化指数试验,动态力学分析(DMA),热分析,拉伸试验和裂缝掉裂缝形态,表征熔融流动性能,相容性,热和机械性能。熔融混合笔/ PPS混合物在加工过程中显示出优异的熔融流动性能。通过PP的含量增加,混合物的熔解指数显着增加,这有利于笔的可加工性。发现PPS通过DMA和DSC结果与笔与笔不兼容。形态学检查表明,PPS阶段随机分散为液滴,在笔矩阵中平均大小为约1〜2μm,这是增强笔韧性的主要原因。重要的是,混合材料保持了诸如考虑进一步的商业应用的笔的特征热和热氧化稳定性以及机械性能。

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