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Effect of capillary forces on the correlation between nanoscale adhesion and friction of polymer patterned surfaces

机译:毛细管力对聚合物图案化表面纳米级粘附性与摩擦的相关性

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A general relation between adhesion and friction was elusive. This was partly due to the limitations in experimentally configuring the wide variety of geometrical and chemical cues encountered at a sliding contact. We study the combined influence of capillary and van der Waals forces on the correlation between the adhesion (pull-off force) and friction of polymer patterns. We report the existence of master curves in plot of adhesion versus friction, spanning nearly two orders of magnitude, characteristic of the effective lateral contact stiffness of the contact determined by geometry and capillary forces. Further, we showed how nanocylindrical patterns, micropatterns and PTFE-coated PMMA flat surfaces subjected to varying capillary forces displayed similar sliding characteristics despite their large differences in contact characteristics.
机译:粘附和摩擦之间的一般关系是难以捉摸的。 这部分是由于实验配置在滑动接触处遇到的各种几何和化学线索的局限性的局限性。 我们研究毛细管和范德瓦尔斯力量的综合影响力对聚合物图案的粘附性(拉出力)与摩擦之间的相关性。 我们报告了粘附性与摩擦图中的主曲线存在的存在,跨越几个数量级,有效的横向接触刚度的特性通过几何和毛细力确定的接触。 此外,我们展示了纳米吲哚图案,微图案和PTFE涂覆的PMMA平坦表面经受变化的毛细力的平坦表面显示出类似的滑动特性,尽管它们的接触特性差异很大。

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