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首页> 外文期刊>Macromolecules >Influence of composition distribution and branch content on the miscibility of m-LLDPE and HDPE blends: Rheological investigation
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Influence of composition distribution and branch content on the miscibility of m-LLDPE and HDPE blends: Rheological investigation

机译:组成分布和支链含量对m-LLDPE和HDPE共混物混溶性的影响:流变学研究

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摘要

The miscibility of metallocene linear low-density polyethylene (m-LLDPE) and Ziegler-Natta LLDPE (ZN-LLDPE) with linear high-density polyethylene (HDPE) was studied. The influences of composition distribution (CD) and branch content (BC) on the miscibility of m-LLDPE and ZN-LLDPE with HDPE were investigated with rheological methods. The m-LLDPEs (BC = 13.2 CH3/1000 C) and ZN-LLDPE (BC = 14.5 CH3/1000 C) of similar molecular weights were paired to study one molecular variable at a time. Melt blending was carried out in a Haake PolyDrive at 190 degreesC in the presence of 1000 ppm of antioxidants. Dynamic and steady shear measurements were performed in a Rheometrics ARES at 190 degreesC. The miscibilities of blends were revealed by the dependence of their eta(o), eta', N-1 and G' on blend composition and from predictions of rheological. models. The CD was found to have no effect on the miscibility of low-BC ZN-LLDPE and m-LLDPE blends with linear HDPE, and both blends were miscible at all compositions. Increasing the branch content (BC = 42.0 CH3/1000 C) resulted in an increased immiscibility of m-LLDPE-rich blends with linear HDPE. The rheology of immiscible blends suggests a layered morphology and agreement with Bousmina-Palierne-Utracki's and Lin's models was obtained with slip parameters k = 2.85 x 10(-5) and lambda = 0.72, respectively. [References: 48]
机译:研究了茂金属线性低密度聚乙烯(m-LLDPE)和齐格勒-纳塔LLDPE(ZN-LLDPE)与线性高密度聚乙烯(HDPE)的混溶性。用流变方法研究了组分分布(CD)和支链含量(BC)对m-LLDPE和ZN-LLDPE与HDPE的混溶性的影响。将分子量相似的m-LLDPE(BC = 13.2 CH3 / 1000 C)和ZN-LLDPE(BC = 14.5 CH3 / 1000 C)配对,一次研究一个分子变量。熔融共混在Haake PolyDrive中在190℃下在1000ppm抗氧化剂的存在下进行。在Rheometrics ARES中于190摄氏度下进行动态和稳态剪切测量。混合物的混溶性是由它们的eta(o),eta',N-1和G'对混合物组成的依赖性以及流变学的预测揭示的。楷模。发现该CD对低BC ZN-LLDPE和m-LLDPE共混物与线性HDPE的混溶性没有影响,并且两种共混物在所有组成下均可混溶。增加支链含量(BC = 42.0 CH3 / 1000 C)会导致富含m-LLDPE的共混物与线性HDPE的不混溶性增加。不混溶混合物的流变学表明层状形态和与Bousmina-Palierne-Utracki和Lin模型的滑模参数分别为k = 2.85 x 10(-5)和lambda = 0.72。 [参考:48]

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