首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Rheological study of heterogeneities in melt blends of ZN-LLDPE and LDPE: Influence of M-w and comonomer type, and implications for miscibility
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Rheological study of heterogeneities in melt blends of ZN-LLDPE and LDPE: Influence of M-w and comonomer type, and implications for miscibility

机译:ZN-LLDPE和LDPE熔体共混物中非均质性的流变学研究:M-w和共聚单体类型的影响及其混溶性

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The influences of molecular weight and LLDPE comonomer type on the heterogeneity (immiscibility) of Ziegler-Natta LLDPE and LDPE blends are investigated with rheological methods. Dynamic and steady shear measurements were carried out in a Rheometrics Mechanical Spectrometer 800.Blends of low-M-w (<10(5))LLDPE (butene) and LDPE are likely homogeneous and miscible as revealed by the dependence of their eta' on blend composition at 140degreesC. Blends of high-M-w (10(5))LLDPE (butene) and LDPE mixed and tested at 190degreesC were only partially miscible; heterogeneity and immiscibility was likely to occur around the 50/50 composition and in the LDPE-rich blends. Blends were likely miscible in the LLDPE-rich range. Increasing the LLDPE branch length (comonomer) from butene to octene slightly increased the miscibility of LLDPE/LDPE blends. It is suggested that the molecular order in polyethylenes (see Hussein and Williams (1999) J Non-Newtonian Fluid Mech 86:105-118; (1998) Macromol Rapid Commun 19:323-325) and mismatch of the molecular conformations of different polyethylene structures provide explanations for the immiscibility of polyethylenes. Agreement was observed between the measured G'(omega) and G"(omega) and theoretical predictions of Palierne and Bousmina-Kerner models, which are based on two-phase emulsion behavior.
机译:用流变方法研究了分子量和LLDPE共聚单体类型对齐格勒-纳塔LLDPE和LDPE共混物非均相性(不混溶性)的影响。动态和稳态剪切测量是在Rheometrics Mechanical Spectrometer 800上进行的。低分子量(<10(5))LLDPE(丁烯)和LDPE的混合物可能均匀且可混溶,这是由于它们的eta'对共混物成分的依赖性所揭示的在140摄氏度高M-w(10(5))LLDPE(丁烯)和LDPE的混合物在190°C混合和测试时只能部分混溶;异质性和不混溶性可能发生在50/50组成附近和LDPE丰富的混合物中。共混物可能在富含LLDPE的范围内混溶。从丁烯到辛烯增加LLDPE支链长度(共聚单体)会稍微增加LLDPE / LDPE共混物的混溶性。提出聚乙烯中的分子顺序(参见侯赛因和威廉姆斯(1999)非牛顿流体力学86:105-118;(1998)Macromol Rapid Commun 19:323-325)和不同聚乙烯的分子构象不匹配。结构为聚乙烯的不溶混性提供了解释。在两相乳液行为的基础上,测得的G'(Ω)和G“(Ω)与Palierne和Bousmina-Kerner模型的理论预测值一致。

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