首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Study of film formation in bovine serum lubricated contacts under rolling/sliding conditions
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Study of film formation in bovine serum lubricated contacts under rolling/sliding conditions

机译:滚动/滑动条件下牛血清润滑触点中膜形成的研究

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The aim of this study is to perform a detailed experimental analysis of lubricant film thickness of bovine serum within the contact between the artificial metal and ceramic heads (balls) and the glass disc to analyse the effect of proteins on film formation under various rolling/sliding conditions. Lubricant film observation of bovine serum solutions was carried out using an optical test rig. Chromatic interferograms were recorded with a high-speed CMOS digital camera and evaluated with thin film colorimetric interferometry. Film thickness was studied as a function of time. Under pure rolling conditions, film thickness increases with time as well as with rolling distance for all mean speeds and for both materials of the balls; however the metal ball always forms a thicker lubricating film in comparison to the ceramic ball. Under rolling/sliding conditions, when the disc is faster than the ball, the formation of lubricant film thickness is different compared to pure rolling conditions. At first, film thickness increases rapidly with a rolling/sliding distance for all mean speeds. When maximum film thickness is reached, then this effect is lost and film thickness starts to fall and finally, at the end of the measurement, film thickness drops down to a few nanometres. For the metal ball, maximum values of central film thicknesses are proportional to the mean speed; however this is not observed with the ceramic ball. An absolutely different formation of bovine serum film thickness is observed when the ball is faster than the disc. Under this condition, the protein layer is very thin for both materials of balls, and central film thickness reaches only about a few nanometres. Local protein spots are formed in a very small area of the contact zone and reach the thickness between 20 and 25 nm for the metal ball and 5 nm for the ceramic ball. From the performed experiments under rolling/sliding conditions, it is obvious that the formation of lubricant film thickness is markedly dependent on kinematic conditions acting in the contact, especially on the positive and negative slide-to-roll ratio and the mean speed. In addition, the material of the artificial head has a certain influence on the formation of bovine serum lubricating film.
机译:这项研究的目的是对人造金属和陶瓷头(球)与玻璃盘之间的接触中牛血清的润滑剂膜厚度进行详细的实验分析,以分析蛋白质在各种滚动/滑动条件下对膜形成的影响条件。牛血清溶液的润滑剂膜观察是使用光学测试仪进行的。彩色干涉图用高速CMOS数码相机记录,并用薄膜比色法进行评估。研究了膜厚度随时间的变化。在纯滚动条件下,对于所有平均速度以及两种球的材料,膜厚度都会随着时间以及滚动距离的增加而增加;然而,与陶瓷球相比,金属球总是形成较厚的润滑膜。在滚动/滑动条件下,当圆盘比球快时,与纯滚动条件相比,润滑膜厚度的形成是不同的。首先,对于所有平均速度,薄膜厚度会随着滚动/滑动距离而迅速增加。当达到最大膜厚时,该效果消失,膜厚开始下降,最后,在测量结束时,膜厚下降至几纳米。对于金属球,中心膜厚度的最大值与平均速度成正比。但是,陶瓷球无法观察到这一点。当球比圆盘快时,观察到牛血清膜厚度的绝对不同的形成。在这种条件下,两种球材料的蛋白质层都非常薄,中心膜厚度仅为几纳米。在接触区域的很小区域中会形成局部蛋白质斑点,金属球的厚度在20至25 nm之间,陶瓷球的厚度在5 nm之间。从在滚动/滑动条件下进行的实验可以明显看出,润滑剂膜厚度的形成明显取决于在接触中起作用的运动条件,特别是正负滑动比和平均速度。另外,人造头的材料对牛血清润滑膜的形成有一定影响。

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