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Monte Carlo simulations of the spatial structure of end-linked bimodal polymer networks: part II

机译:末端连接的双峰聚合物网络空间结构的蒙特卡洛模拟:第二部分

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The article presents the results of Monte Carlo simulations of bimodal networks performed with the Bond-Fluctuation-Algorithm. First the sol-fractions of networks with different ratios of short chains were studied and found to be always less than 2%. Concerning clustering behaviour, we saw that while random networks always form a main cluster containing more than 95% of all chains, simulated networks with less than 80% short chains do not form a main cluster. The density profiles during the swelling process show that clustering is reflected in a lower swelling degree and a sharper transition zone between the inner part and the boundary regions of the network. Finally, comparing the density distributions of crosslinkers of unimodal and bimodal networks, we found that all unimodal networks have a more ordered structure in their interior than in the melt. On the other hand, bimodal networks, where the ratio between long and short chains leads to equal masses of the fractions, show a superposition of two separate density distribution peaks, leading to a broader distribution than the Gaussian distribution found for a melt.
机译:本文介绍了用Bond-Fluctuation-Algorithm执行的双峰网络的蒙特卡罗模拟结果。首先,研究了具有不同比例短链的网络的溶胶分数,发现其总分数始终小于2%。关于群集行为,我们看到,尽管随机网络始终构成包含所有链中95%以上的主群集,但是具有少于80%短链的模拟网络却不构成主群集。溶胀过程中的密度分布图表明,聚类反映在较低的溶胀度和网络内部与边界区域之间的过渡区域更尖锐。最后,通过比较单峰和双峰网络交联剂的密度分布,我们发现所有单峰网络的内部结构均比熔体结构更有序。另一方面,长链与短链之比导致馏分质量相等的双峰网络显示出两个单独的密度分布峰的叠加,从而导致其分布比熔体的高斯分布更宽。

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