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Influence of Chain Stiffness Grafting Density and Normal Load on the Tribological and Structural Behavior of Polymer Brushes: A Nonequilibrium-Molecular-Dynamics Study

机译:链刚度接枝密度和法向载荷对聚合物刷的摩擦学和结构行为的影响:非平衡-分子-动力学研究

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摘要

We have performed coarse-grained molecular-dynamics simulations on both flexible and semiflexible multi-bead-spring model polymer brushes in the presence of explicit solvent particles, to explore their tribological and structural behaviors. The effect of stiffness and tethering density on equilibrium-brush height is seen to be well reproduced within a Flory-type theory. After discussing the equilibrium behavior of the model brushes, we first study the shearing behavior of flexible chains at different grafting densities covering brush and mushroom regimes. Next, we focus on the effect of chain stiffness on the tribological behavior of polymer brushes. The tribological properties are interpreted by means of the simultaneously recorded density profiles. We find that the friction coefficient decreases with increasing persistence length, both in velocity and separation-dependency studies, over the stiffness range explored in this work.
机译:我们在存在明确溶剂颗粒的情况下,对柔性和半柔性多珠弹簧模型聚合物刷均进行了粗粒度的分子动力学模拟,以研究其摩擦学和结构行为。在弗洛里型理论中,可以很好地再现刚度和束缚密度对平衡刷高度的影响。在讨论了模型刷子的平衡行为之后,我们首先研究了在不同的接枝密度下,包括刷子和蘑菇形式的柔性链的剪切行为。接下来,我们关注链刚度对聚合物刷的摩擦学行为的影响。通过同时记录的密度曲线来解释摩擦学性质。我们发现在这项工作探索的刚度范围内,在速度和分离相关性研究中,摩擦系数随着持续长度的增加而减小。

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