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On the friction and adhesion hysteresis between polymer brushes attached to curved surfaces: Rate and solvation effects

机译:关于附着在曲面上的聚合物刷之间的摩擦和粘附滞后:速率和溶剂化效果

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摘要

Computer simulations of friction between polymer brushes are usually simplified compared to real systems in terms of solvents and geometry. In most simulations, the solvent is only implicit with infinite compressibility and zero inertia. In addition, the model geometries are parallel walls rather than curved or rough as in reality. In this work, we study the effects of these approximations and more generally the relevance of solvation on dissipation in polymer-brush systems by comparing simulations based on different solvation schemes. We find that the rate dependence of the energy loss during the collision of brush-bearing asperities can be different for explicit and implicit solvent. Moreover, the non-Newtonian rate dependences differ noticeably between normal and transverse motion, i.e., between head-on and off-center asperity collisions. Lastly, when the two opposing brushes are made immiscible, the friction is dramatically reduced compared to an undersaturated miscible polymer-brush system, irrespective of the sliding direction.
机译:在溶剂和几何形状方面,与实际系统相比,聚合物刷之间的摩擦模拟通常会得到简化。在大多数模拟中,溶剂仅具有无限的可压缩性和零惯性而隐含。另外,模型的几何形状是平行的壁,而不是实际的弯曲或粗糙。在这项工作中,我们通过比较基于不同溶剂化方案的模拟,研究了这些近似值的影响,更广泛地研究了溶剂化对聚合物-刷子系统中耗散的相关性。我们发现,在含刷粗糙物碰撞期间,能量损失的速率依赖性对于显式和隐式溶剂可能有所不同。此外,非牛顿速率依赖性在法向运动和横向运动之间,即在正面和偏心的凹凸碰撞之间明显不同。最后,当使两个相对的刷子互不相溶时,与不饱和的可混溶的聚合物-刷子系统相比,无论滑动方向如何,摩擦都会大大降低。

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