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Rheological properties of polypropylenes with different molecular weight distribution characteristics

机译:不同分子量分布特性的聚丙烯的流变性能

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Relationships between the rheological properties and the molecular weight distribution of two polypropylene series with different molecular weight distribution characteristics were studied. The end correction coefficient in capillary flow is determined by the molecular weight M-w and the molecular weight distribution M-w/M-n, and is higher as both characteristic values are larger. The die swell ratio at a constant shear rate depends on M-w, M-w/M-n, and M-z/M-w, and is higher as the three characteristic values are larger. The critical shear rate at which a melt fracture begins to occurs depends on the molecular weight M-w and the molecular weight distribution M-w/M-n, and is proportional to M-z/M-w(2) in a log-log plot. The critical shear stress does not depend on the molecular weight, and is higher as is higher. The zero-shear viscosity is determined by a molecular weight of slightly hi e order than M-w, and the characteristic relaxation time is determined by M-z. The storage modulus at a constant loss modulus scarcely depends on the molecular weight, and is higher a's the molecular weight distribution M-w/M-n is higher. (C) 2002 Wiley Periodicals, Inc. [References: 73]
机译:研究了两种具有不同分子量分布特征的聚丙烯系列的流变性质与分子量分布之间的关系。毛细管流动中的末端校正系数由分子量M-w和分子量分布M-w / M-n决定,并且随着两个特性值的增大而增大。恒定剪切速率下的模头溶胀率取决于M-w,M-w / M-n和M-z / M-w,并且随着三个特性值的增大而增大。熔体破裂开始发生的临界剪切速率取决于分子量M-w和分子量分布M-w / M-n,并且在对数对数图中与M-z / M-w(2)成比例。临界剪切应力不取决于分子量,并且越高越高。零剪切粘度由比M-w稍高的分子量决定,特征弛豫时间由M-z决定。恒定损耗模量下的储能模量几乎不依赖于分子量,a越高,分子量分布M-w / M-n越高。 (C)2002 Wiley Periodicals,Inc. [参考:73]

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