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Chain packing in ethylene-butene copolymers

机译:乙烯-丁烯共聚物的链堆积

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We investigate intermolecular packing in a series of five ethylene/butene random copolymers and various binary mixtures of the pure components using molecular dynamics simulation. The simulation model provides chain dimensions and solubility parameters as a function of butene content that are consistent with experiment. In pure materials, intermolecular packing varies directly with butene content, with low butene content materials packing more efficiently. If butene placement is made alternating instead of random, the material behaves as if its butene content has been lowered. In mixtures, the dominant trend is for the more efficient packer to increase its self-packing, while the less efficient packer decreases its self-packing-in other words, the two distributions move further apart on mixing. In these cases, the cross-correlation is described by an average of the two components. In some instances, large preferences for cross-correlations are observed at the expense of self-correlations. In addition, an efficient packer is more resistant to changes of self-packing on mixing than a poor packer, and self-packing changes more if the material is placed in a dissimilar environment. [References: 39]
机译:我们使用分子动力学模拟研究了一系列五种乙烯/丁烯无规共聚物和纯组分的各种二元混合物的分子间堆积。模拟模型提供的链尺寸和溶解度参数是丁烯含量的函数,与实验一致。在纯材料中,分子间堆积随丁烯含量而直接变化,而丁烯含量低的材料则更有效地堆积。如果将丁烯放置交替而不是无规放置,则该材料的行为就好像其丁烯含量已降低。在混合物中,主要趋势是,效率更高的包装机增加其自包装性能,而效率更低的包装机降低其自包装性能,换句话说,两种分布在混合时会进一步分开。在这些情况下,互相关由两个分量的平均值来描述。在某些情况下,以互相关为代价观察到对互相关的较大偏爱。另外,高效的包装机比起劣质的包装机更能抵抗混合时的自包装变化,如果将物料放置在不同的环境中,自包装的变化也会更大。 [参考:39]

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