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首页> 外文期刊>Journal of Applied Polymer Science >Rheological behavior and mechanical properties of high-density polyethylene blends with different molecular weights
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Rheological behavior and mechanical properties of high-density polyethylene blends with different molecular weights

机译:不同分子量的高密度聚乙烯共混物的流变行为和力学性能

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The dynamic rheological and mechanical properties of the binary blends of two conventional highdensity polyethylenes [HDPEs; low molecular weight (LMW) and high molecular weight (HMW)] with distinct different weight-average molecular weights were studied. The rheological results show that the rheological behavior of the blends departed from classical linear viscoelastic theory because of the polydispersity of the HDPEs that we used. Plots of the logarithm of the zero shear viscosity fitted by the Cross model versus the blend composition, Cole-Cole plots, Han curves, and master curves of the storage and loss moduli indicated the LMW/HMW blends of different compositions were miscible in the melt state. The tensile yield strength of the blends generally followed the linear additivity rule, whereas the elongation at break and impact strength were lower than those predicted by linear additivity; this suggested the incompatibility of the blends in solid state.
机译:两种常规高密度聚乙烯[HDPE]的二元共混物的动态流变和力学性能。研究了具有不同重均分子量的低分子量(LMW)和高分子量(HMW)]。流变结果表明,由于我们使用的HDPE的多分散性,共混物的流变行为偏离了经典的线性粘弹性理论。 Cross模型拟合的零剪切粘度对数图与共混物组成,Cole-Cole图,Han曲线以及储能模量和损耗模量的主曲线表明,不同组成的LMW / HMW共混物可混溶州。共混物的拉伸屈服强度通常遵循线性加和法则,而断裂伸长率和冲击强度低于线性加和法预测的值。这表明固态混合物的不相容性。

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