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首页> 外文期刊>Journal of Applied Polymer Science >Phase morphology development and melt rheological behavior in nylon 6/polystyrene blends
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Phase morphology development and melt rheological behavior in nylon 6/polystyrene blends

机译:尼龙6 /聚苯乙烯共混物的相形态发展和熔体流变行为

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摘要

Phase morphology development in immiscible blends of polystyrene (PS)ylon 6 was investigated. The blends were prepared by melt blending in a twin-screw extruder. The influence of the blend ratio, rotation speed of the rotors, and time of mixing on the phase morphology of the blends was carefully analyzed. The morphology of the samples was examined under a scanning electron microscope (SEM) and the SEM micrographs were, quantitatively analyzed for domain-size measurements. From the morphology studies, it is evident that the minor component, whether PS or nylon, forms the dispersed phase, whereas the major component forms the continuous phase. The 50/50 PSylon blend exhibits cocontinuous morphology. The continuity of the dispersed phase was estimated quantitatively based on the preferential solvent-extraction technique, which suggested that both phases are almost continuous at a 50/50 blend composition. The effect of the rotor speed on the blend morphology was investigated. It was observed that the most significant breakdown occurred at an increasing rotor speed from 9 to 20 rpm and, thereafter, the domain size remained almost the same even when the rotor speed was increased. The studies on the influence of the mixing time on the blend morphology indicated that the major breakdown of the dispersed phase occurred at the early stages of mixing. The melt rheological behavior of the blend system was studied using a capillary rheometer. The effect of the blend ratio and the shear stress on the melt viscosity of the system was investigated. Melt viscosity decreased with increase in the shear stress, indicating pseudo-plastic behavior. With increase of the weight fraction of PS, the melt viscosity of the system decreased. The negative deviation of the measured viscosity from the additivity rule indicated the immiscibility of the blends. The domain size versus the viscosity ratio showed a minimum value when the viscosities of the two phases were matched, in agreement with Wu's prediction. The morphology of the extrudates was analyzed by SEM. From these observations, it was noted that as the shear rate increased the particle size decreased considerably. (C) 2002 Wiley Periodicals, Inc. [References: 39]
机译:研究了聚苯乙烯(PS)/尼龙6不混溶共混物的相形态发展。通过在双螺杆挤出机中熔融共混来制备共混物。仔细分析了混合比,转子的转速和混合时间对混合相形态的影响。在扫描电子显微镜(SEM)下检查样品的形态,并对SEM显微照片进行定量分析以进行域大小测量。从形态学研究,很明显,次要组分,无论是PS还是尼龙,都形成分散相,而主要组分则形成连续相。 50/50 PS /尼龙混合物显示出连续的形态。分散相的连续性是根据优先溶剂萃取技术定量估算的,这表明在50/50的共混物组成下,两相几乎是连续的。研究了转子转速对共混物形态的影响。观察到,当转子转速从9 rpm提高到20 rpm时,发生的故障最为明显,此后,即使转子转速提高,畴尺寸也几乎保持不变。对混合时间对混合形态的影响的研究表明,分散相的主要分解发生在混合的早期。使用毛细管流变仪研究了共混体系的熔体流变行为。研究了共混比和剪切应力对体系熔融粘度的影响。熔体粘度随切应力的增加而降低,表明其为假塑性行为。随着PS重量分数的增加,体系的熔体粘度降低。所测粘度与可加性规则的负偏差表示共混物的不溶混性。当两相的粘度匹配时,畴尺寸与粘度比显示出最小值,与Wu的预测一致。通过SEM分析挤出物的形态。从这些观察结果中可以看出,随着剪切速率的增加,粒径大大减小。 (C)2002 Wiley Periodicals,Inc. [参考:39]

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