Mechanical properties of very thin surface films

A. Roberts, D. Tabor
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引用次数: 6

Abstract

This paper comprises two parts: the first briefly describes some earlier work on the determination of the shear strength of a calcium stearate bimolecular layer deposited between two mica surfaces. The second part deals with some more recent studies on the mechanical properties of thin liquid films sandwiched between a rubber and glass surface. The rubber surface was soft and optically smooth so that certain liquids squeezed between it and polished glass formed a very thin film of uniform thickness. Squeeze film studies made with this system revealed the importance of repulsive forces exerted by electrically-charged double layers residing on the solid surfaces. These forces were able to support the externally applied pressure so that an equilibrium film some 200 A thick was obtained.When rubber and glass surfaces were sheared in the presence of an electrolyte solution, double-layer repulsion helped to support the normal load and so protect the surfaces from serious abrasion. The presence of a soap in the solution led to further protection by an oriented monolayer on the rubber surface. Measurements suggested that these two factors operated to provide effective lubrication—the electrical repulsive forces to keep surfaces apart and the SDS monolayer for increased protection at points of intimate contact where the separating fluid had been locally penetrated.
非常薄的表面薄膜的机械性能
本文包括两个部分:第一部分简要介绍了一些早期的工作在测定硬脂酸钙双分子层的剪切强度沉积在两个云母表面之间。第二部分讨论了最近关于夹在橡胶和玻璃表面之间的液体薄膜的机械性能的一些研究。橡胶表面柔软且光学光滑,因此某些液体挤压在它和抛光玻璃之间形成厚度均匀的非常薄的薄膜。用该系统进行的挤压膜研究揭示了驻留在固体表面的带电双层施加的排斥力的重要性。这些力能够支持外部施加的压力,从而获得约200a厚的平衡膜。当橡胶和玻璃表面在电解质溶液中被剪切时,双层斥力有助于支撑正常负载,从而保护表面免受严重磨损。在溶液中加入肥皂后,橡胶表面的定向单层进一步起到了保护作用。测量结果表明,这两个因素的作用是提供有效的润滑:电斥力使表面保持分离,SDS单层在分离流体局部渗透的亲密接触点增加保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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