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Reduction of friction stress of ethylene glycol by attached hydrogen ions

机译:附着氢离子降低乙二醇的摩擦应力

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摘要

In the present work, it is shown that the friction stress of ethylene glycol can decrease by an order of magnitude to achieve superlubricity if there are hydrogen ions attached on the friction surfaces. An ultra-low friction coefficient (μ = 0.004) of ethylene glycol between Si3N4 and SiO2 can be obtained with the effect of hydrogen ions. Experimental result indicates that the hydrogen ions adsorbed on the friction surfaces forming a hydration layer and the ethylene glycol in the contact region forming an elastohydrodynamic film are the two indispensable factors for the reduction of friction stress. The mechanism of superlubricity is attributed to the extremely low shear strength of formation of elastohydrodynamic film on the hydration layer. This finding may introduce a new approach to reduce friction coefficient of liquid by attaching hydrogen ions on friction surfaces.
机译:在目前的工作中,显示出如果在摩擦表面上附着氢离子,则乙二醇的摩擦应力可以减小一个数量级以实现超润滑。在氢离子的作用下,可以在Si3N4和SiO2之间获得乙二醇的超低摩擦系数(μ= 0.004)。实验结果表明,吸附在形成水化层的摩擦面上的氢离子和形成弹性流体力学膜的接触区中的乙二醇是减小摩擦应力的两个必不可少的因素。超润滑的机理归因于在水合层上形成弹性流体动力膜的极低剪切强度。这一发现可能会引入一种新方法,通过将氢离子附着在摩擦表面上来降低液体的摩擦系数。

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