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The Capillary Force between an AFM Tip and a Surface at Different Humidity

机译:AFM尖端与不同湿度下的表面之间的毛细管力

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In the present study, the meniscus profiles of water bridges formed at different relative humidity are determined using the geometric relationships including the Kelvin equation and the force equilibrium formula established for the meniscus. The pull-off forces predicted by the present model show good agreement with the experimental results reported in the literatures. When the contact angles at two solid bodies are equal, the pull-off force is slightly elevated by an increase of the relative humidity of air, and is significantly elevated by an increase of the asperity radius. Furthermore, two hydrophobic surfaces with equally large contact angles lower the pull-off force. If a difference exists between the contact angles of two solid surfaces, the asperity with a hydrophilic surface incorporating with a smooth flat plate with a hydrophobic surface reduces the pull-off force.
机译:在本研究中,使用包括Kelvin方程和为弯月面建立的力平衡公式的几何关系确定在不同相对湿度下形成的水桥的弯月面谱。本模型预测的拉出力与文献报告的实验结果表现出良好的一致性。当两个固体处的接触角相等时,通过空气的相对湿度的增加,拉出力略微升高,并且通过增加粗糙半径的增加显着提升。此外,两个具有同样大的接触角的疏水表面降低了拉出力。如果在两个固体表面的接触角之间存在差异,则具有具有疏水表面的平滑平板的亲水表面的粗糙度降低了拉出力。

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