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Rheological Behavior of Blends of Metallocene Catalyzed Long-Chain Branched Polyethylenes. Part I: Shear Rheological and Thermorheological Behavior

机译:茂金属催化长链支化聚乙烯共混物的流变行为。第一部分:剪切流变学和热流变

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摘要

Long-chain branched metallocene-catalyzed high-density polyethylenes (LCB-mHDPE) were solution blended to obtain blends with varying degrees of branching. A high molecular LCB-mHDPE was mixed with low molecular LCB-mHDPE at varying concentrations. The rheological behavior of those low molecular LCB-mHDPE is similar but their molar mass and molar mass distribution are significantly different. Those blends were characterized rheologically to study the effects of concentration, molar mass distribution, and long-chain branching level of the low molecular LCB-mHDPE. Owing to the ultra-long relaxation times of the high molecular LCB-mHDPE, the blends exhibited a clearly more long-chain branched behavior than the base materials. The thermorheological complexity analysis showed an apparent increase in the activation energies Ea determined from G′, G″, and especially δ. Ea(δ), which for LCB-mHDPE is a peak function, turned out to produce even more pronounced peaks than observed for LCB-mPE with narrow molar mass distribution and also LCB-mPE with broader molar mass distribution. Thus, it is possible to estimate the molar mass distribution from the details of the thermorheological complexity.
机译:长链支化茂金属催化的高密度聚乙烯(LCB-MHDPE)被混合溶液,得到具有不同程度的支化的共混物。将高分子LCB-MHDPE与低分子LCB-MHDPE以不同的浓度混合。那些低分子LCB-MHDPE的流变行为是相似的,但它们的摩尔质量和摩尔质量分布显着不同。这些混合物的特征是流变学,以研究低分子LCB-MHDPE的浓度,摩尔质量分布和长链支化水平的影响。由于高分子LCB-MHDPE的超长弛豫时间,混合物显示出比基础材料更高的长链支链行为。热热复杂性分析显示出从G',G“,特别是δ确定的激活能量EA表观增加。对于LCB-MHDPE的EA(δ)是峰值功能,原来产生比具有窄摩尔质量分布的LCB-MPE和具有更宽摩尔质量分布的LCB-MPE的LCB-MPE更明显的峰。因此,可以从热感染性的细节估计摩尔质量分布。

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