首页> 外文期刊>Journal of Applied Polymer Science >Influence of branching characteristics on thermal and mechanical properties of Ziegler-Natta and metallocene hexene linear low-density polyethylene blends with low-density polyethylene
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Influence of branching characteristics on thermal and mechanical properties of Ziegler-Natta and metallocene hexene linear low-density polyethylene blends with low-density polyethylene

机译:支化特性对齐格勒-纳塔和茂金属己烯线性低密度聚乙烯与低密度聚乙烯共混物的热和机械性能的影响

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摘要

The effect of the branch content (BC) and composition distribution (CD) of linear low-density polyethylene (LLDPE) on the thermal and mechanical properties of its blends with LDPE were studied. All blends and pure resins were conditioned in a Haake PolyDrive blender at 190 degrees C and in the presence of adequate amounts of antioxidant. Two metallocene LLDPEs (m-LLDPE) and one Ziegler-Natta (ZN) hexene LLDPE were melt blended with the same LDPE. The effect of the BC was investigated by blending two hexene m-LLDPEs of similar weight-average molecular weights and molecular weight distributions but different BCs with the same LDPE. The effect of the CD was studied by using a ZN and an m-LLDPE with similar weight-average molecular weights, BCs, and comonomer type. Low-BC m-LLDPE blends showed separate crystallization whereas cocrystallization was observed in the high-BC m-LLDPE-rich blends. However, ZN-LLDPE/LDPE blends showed separate crystallization together with a third population of cocrystals. The influence of the crystallization behavior was reflected in the mechanical properties. The BC influenced the modulus, ultimate tensile strength, and toughness. The addition of a small amount of LDPE to a low-BC m-LLDPE resulted in a major improvement in the toughness, whereas the results for the high-BC pair followed the additivity rule. ZN-LLDPE blends with LDPE blends were found to be more compatible and exhibited superior mechanical properties compared to m-LLDPE counterparts with the same weight-average molecular weight and BC. All mechanical properties of ZN-LLDPE blends follow the linear rule of mixtures. However, the CD had a stronger influence on the mechanical properties in comparison to the BC. (c) 2005 Wiley Periodicals, Inc.
机译:研究了线性低密度聚乙烯(LLDPE)的支链含量(BC)和组成分布(CD)对它与LDPE的共混物的热力学性能的影响。所有混合物和纯树脂均在Haake PolyDrive混合器中于190℃并有足够量的抗氧化剂存在下进行调理。将两个茂金属LLDPE(m-LLDPE)和一个齐格勒-纳塔(ZN)己烯LLDPE与相同的LDPE熔融共混。通过将两种重均分子量和分子量分布相似,但不同BCs与相同LDPE混合的己烯间LLDPE来研究BC的效果。通过使用具有相似的重均分子量,BC和共聚单体类型的ZN和m-LLDPE,研究了CD的效果。低BC m-LLDPE共混物显示出单独的结晶,而在富含高BC m-LLDPE的共混物中观察到共结晶。但是,ZN-LLDPE / LDPE共混物显示出单独的结晶以及第三共晶。结晶行为的影响反映在机械性能中。 BC影响模量,极限拉伸强度和韧性。在低BC m-LLDPE中添加少量LDPE会导致韧性显着提高,而高BC对的结果遵循可加性规则。与具有相同重均分子量和BC的m-LLDPE对应物相比,发现ZN-LLDPE掺合物与LDPE掺合物具有更好的相容性并表现出优异的机械性能。 ZN-LLDPE共混物的所有机械性能均遵循混合物的线性规律。但是,与BC相比,CD对机械性能的影响更大。 (c)2005年Wiley Periodicals,Inc.

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