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Organoclay-modified thermotropic liquid crystalline polymers as viscosity reduction agents for high molecular mass polyethylene

机译:有机粘土改性的热致液晶聚合物作为高分子聚乙烯的降粘剂

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摘要

Small amounts of organoclays of different sizes and concentrations were added into thermotropic liquid crystalline polymer (TLCP) forming four types of organoclay-modified TLCPs (TC3 white, TC3 dark, TC3 FS, and TC3 UP), which had different rheological behaviors in the nematic temperature region of TLCP. Acting as viscosity reduction agents, 1.0 wt% of each organoclay-modified TLCPs were blended with high molecular mass polyethylene (HMMPE), respectively. The organoclay-modified TLCP/HMMPE blends displayed different rheological properties from each other or compared with HMMPE and 1.0 wt% TLCP/HMMPE blend [PT1]. The organoclay-modified TLCPs had greater viscosity reduction efficiency than the original TLCP in HMMPE, a lower yielding stress and yielding start shear rate, and a narrower yielding transition region than those of PT1. The rheological performance of the blends, 1.0 wt% TC3 white/HMMPE, 1.0 wt% TC3 FS/HMMPE, and PT1, could be successfully described by a binary flow pattern model.
机译:将少量不同尺寸和浓度的有机粘土添加到热致液晶聚合物(TLCP)中,形成四种类型的有机粘土改性TLCP(TC3白色,TC3黑色,TC3 FS和TC3 UP),它们在向列相中具有不同的流变行为TLCP的温度区域。作为减粘剂,将每种有机粘土改性的TLCP的1.0 wt%分别与高分子量聚乙烯(HMMPE)混合。有机粘土改性的TLCP / HMMPE共混物表现出彼此不同的流变特性,或者与HMMPE和1.0 wt%TLCP / HMMPE共混物[PT1]相比。有机粘土改性的TLCP比HMMPE中的原始TLCP具有更高的粘度降低效率,比PT1具有更低的屈服应力和屈服起始剪切速率,以及更窄的屈服过渡区。可以通过二元流型模型成功地描述混合物的流变性能,即1.0 wt%TC3白色/HMMPE、1.0 wt%TC3 FS / HMMPE和PT1。

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