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Ultrasonic reflection from mixed liquid-solid contacts and the determination of interface stiffness

机译:混合液固接触的超声反射和界面刚度的确定

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摘要

In thin film or boundary lubricated contacts there is a possibility of potentially damaging asperity contact occurring. Whilst there are many models of this contact mechanism, experimental verification of the proportion of solid contact is difficult to achieve. Electrical methods will only indicate that contact has occurred. Whereas, optical methods can be used to determine the proportion of contact, but only when one surface is transparent. In this work the use of ultrasonic reflection is investigated as a means to analyse these types of mixed solid-liquid contacts. A pulse of ultrasound is partially reflected at the contact between two rough surfaces. The proportion of the wave reflected can be readily used to determine the stiffness of the interface. Experimental data has been obtained from grit-blasted surfaces pressed together, both with and without liquid at the interface. The interface stiffness can be modelled by two springs in series, one of them representing the solid contact stiffness, Ksolid and the other the stiffness of the liquid fluid, Kliquid. The variation of these stiffness values with contact pressure has been investigated. At this stage it is not possible to directly determine the proportion of liquid or solid contact from the stiffness. The results however, give qualitative comparisons and information about the approach of the surfaces and hence the mean thickness of the liquid layer at the interface.
机译:在薄膜或边界润滑的触点中,可能会损坏粗糙的触点。尽管有许多这种接触机理的模型,但是很难实现对固体接触比例的实验验证。电气方法将仅指示已发生接触。而光学方法可以用于确定接触比例,但仅当一个表面透明​​时才可以。在这项工作中,研究了使用超声反射作为分析这些类型的固液混合接触的方法。超声波脉冲在两个粗糙表面之间的接触处部分反射。反射波的比例可以很容易地用于确定界面的刚度。从压在一起的喷砂表面获得了实验数据,无论界面处有无液体。界面刚度可以通过两个串联的弹簧来建模,其中一个代表固体接触刚度Ksolid,另一个代表液态流体的刚度Kliquid。研究了这些刚度值随接触压力的变化。在此阶段,不可能根据刚度直接确定液体或固体接触的比例。然而,结果给出了定性的比较和有关表面接近度的信息,从而给出了界面处液体层的平均厚度。

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