Thickness of very thin films in elastohydrodynamic lubrication

A. Dyson
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引用次数: 4

Abstract

Films of lubricant were formed between two loaded rolling steel discs, and the thicknesses of the films were estimated from measurements of the electrical capacitance between the discs. Two mineral oils and one synthetic diester were used as lubricants. The minimum film thicknesses ranged down to approximately 10 nm (100 A), and agreed approximately with the predictions of an isothermal Newtonian theory in which the viscosity of the lubricant, measured in bulk, was used. Of the four sets of results examined, only one, that for the di-ester, gave measured film thicknesses greater than the theoretical ones. The discrepancy of 13 % is probably within the systematic errors of the experiment and of the theory. With this exception, there was therefore no evidence that the viscosity of the lubricant was affected by the close proximity of the metal surfaces. The maximum shear rate in these experiments was of the order of 107 s–1, i.e., several orders of magnitude greater than those obtaining in other experiments reported in the literature, in which the viscosity of a fluid was increased by the presence of the surfaces.
弹性流体动力润滑中极薄薄膜的厚度
在两个加载的滚动钢盘之间形成润滑膜,并通过测量钢盘之间的电容来估计润滑膜的厚度。使用两种矿物油和一种合成二酯作为润滑剂。最小薄膜厚度约为10nm (100a),与等温牛顿理论的预测大致一致,其中使用了散装测量的润滑剂粘度。在研究的四组结果中,只有一组,即二酯,给出了测量的薄膜厚度大于理论厚度。13%的误差可能在实验和理论的系统误差之内。除了这个例外,因此没有证据表明润滑剂的粘度受到金属表面接近程度的影响。这些实验中的最大剪切速率约为107 s-1,即比文献中报道的其他实验中获得的剪切速率大几个数量级,在这些实验中,流体的粘度因表面的存在而增加。
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