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Effect of liquid crystal molecular orientation controlled by an electric field on friction

机译:电场对摩擦液晶分子取向对摩擦的影响

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Molecular orientation of the lubricating film will affect the lubrication state, especially in boundary lubrication. In this work, electrical field was used to affect the orientation of liquid crystal molecules during friction. We demonstrated that the use of an electric field applied between the steel ball and the chromium film on the surface of the glass plate provided an effective method for controlling the orientation of the liquid crystal molecules in a sliding point contact. The coupling effects of shear and electric field on friction were investigated with an in situ Raman spectrometer. This work shed new light on the influence of the adsorbed film on sliding friction coefficient, especially in thin-film lubrication regime.
机译:润滑膜的分子取向将影响润滑状态,特别是在边界润滑中。 在这项工作中,使用电场在摩擦期间影响液晶分子的取向。 我们证明,在玻璃板的表面上使用施加在钢球和铬膜之间的电场提供了一种用于控制滑点接触中液晶分子的取向的有效方法。 采用原位拉曼光谱仪研究了剪切和电场对摩擦的耦合效应。 这项工作揭示了吸附薄膜对滑动摩擦系数的影响,特别是在薄膜润滑制度中的影响。

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