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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Poly(ether ether ketone)/poly(aryl ether sulfone) blends: Melt rheological behavior
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Poly(ether ether ketone)/poly(aryl ether sulfone) blends: Melt rheological behavior

机译:聚(醚醚酮)/聚(芳基醚砜)共混物:熔体流变行为

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摘要

Dynamic rheological measurements were carried out on blends of poly(ether ether ketone) (PEEK)/poly(aryl ether sulfone) (PES) in the melt state in the oscillatory shear mode. The data were analyzed for the fundamental rheological behavior to yield insight into the microstructure of PEEK/PES blends. A variation of complex viscosity with composition exhibited positive-negative deviations from the log-additivity rule and was typical for a continuous-discrete type of morphology with weak interaction among droplets. The point of transition showed that phase inversion takes place at composition with a 0.6 weight fraction of PEEK, which agreed with the actual morphology of these blends observed by scanning electron microscopy. Activation energy for flow, for blend compositions followed additive behavior, which indicated that PEEK/PES blends may have had some compatibility in the melt. Variation of the elastic modulus (G') with composition showed a trend similar to that observed for complex viscosity. A three-zone model used for understanding the dynamic moduli behavior of polymers demonstrated that PEEK follows plateau-zone behavior, whereas PES exhibits only terminal-zone behavior in the frequency range studied. The blends of these two polymers showed an intermediate behavior, and the crossover frequency shifted to the low-frequency region as the PEEK content in PES increased. This revealed the shift of terminal-zone behavior to low frequency with an increased PEEK percentage in the blend. Variation of relaxation time with composition suggested that slow relaxation of PEEK retards the relaxation process of PES as the PEEK concentration in the blend is increased because of the partial miscibility of the blend, which affects the constraint release process of pure components in the blend. A temperature-independent correlation observed in the log-log plots of G' versus loss modulus (G") for different blend systems fulfilled the necessary condition for their rheological simplicity. Further, the composition-dependent correlations of PEEK/PES blends observed in a log-log plot of G' versus G" showed that the blends are either partially miscible or immiscible and form a discrete-continuous phase morphology. (C) 2004 Wiley Periodicals, Inc. [References: 61]
机译:在流变剪切模式下,以熔融态对聚醚醚酮(PEEK)/聚芳醚砜(PES)的混合物进行动态流变测量。分析数据的基本流变行为,以深入了解PEEK / PES共混物的微观结构。复数粘度随组成的变化表现出与对数加和规则的正负偏差,这是液滴之间相互作用较弱的连续离散型形态的典型特征。转变点表明,相转变发生在具有0.6重量份PEEK的组成上,这与通过扫描电子显微镜观察到的这些共混物的实际形态一致。流动的活化能,共混物组合物遵循添加剂行为,这表明PEEK / PES共混物在熔体中可能具有一定的相容性。弹性模量(G’)随组成的变化显示出与复数粘度相似的趋势。用于了解聚合物动态模量行为的三区域模型表明,PEEK遵循高原区域的行为,而PES在研究的频率范围内仅表现出末端区域的行为。这两种聚合物的共混物表现出中间行为,并且随着PES中PEEK含量的增加,交越频率移至低频区域。这表明,随着共混物中PEEK百分比的增加,末端区域的行为向低频转移。弛豫时间随组成的变化表明,由于共混物的部分溶混性,PEEK浓度的增加会增加PEEK的缓慢弛豫速度,从而延迟PES的弛豫过程,这会影响共混物中纯组分的约束释放过程。对于不同的共混体系,在G'与损耗模量(G“)的对数对数图中观察到的与温度无关的相关性满足了其流变简单性的必要条件。此外,在混合体系中观察到的PEEK / PES共混物的成分相关的相关性G′对G″的对数-对数图表明,所述共混物是部分可混溶的或不混溶的,并形成离散的连续相形态。 (C)2004 Wiley Periodicals,Inc. [参考:61]

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