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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >In situ measurements of thin films in bovine serum lubricated contacts using optical interferometry
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In situ measurements of thin films in bovine serum lubricated contacts using optical interferometry

机译:使用光学干涉仪原位测量牛血清润滑触点中的薄膜

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The aim of this study is to consider the relevance of in situ measurements of bovine serum film thickness in the optical test device that could be related to the function of the artificial hip joint. It is mainly focussed on the effect of the hydrophobicity or hydrophilicity of the transparent surface and the effect of its geometry. Film thickness measurements were performed using ball-on-disc and lens-on-disc configurations of optical test device as a function of time. Chromatic interferograms were recorded with a high-speed complementary metal-oxide semiconductor digital camera and evaluated with thin film colorimetric interferometry. It was clarified that a chromium layer covering the glass disc has a hydrophobic behaviour which supports the adsorption of proteins contained in the bovine serum solution, thereby a thicker lubricating film is formed. On the contrary, the protein film formation was not observed when the disc was covered with a silica layer having a hydrophilic behaviour. In this case, a very thin lubricating film was formed only due to the hydrodynamic effect. Metal and ceramic balls have no substantial effect on lubricant film formation although their contact surfaces have relatively different wettability. It was confirmed that conformity of contacting surfaces and kinematic conditions has fundamental effect on bovine serum film formation. In the ball-on-disc configuration, the lubricant film is formed predominantly due to protein aggregations, which pass through the contact zone and increase the film thickness. In the more conformal ball-on-lens configuration, the lubricant film is formed predominantly due to hydrodynamic effect, thereby the film thickness is kept constant during measurement.
机译:这项研究的目的是考虑在光学测试装置中原位测量牛血清膜厚度的相关性,这可能与人工髋关节的功能有关。它主要集中在透明表面的疏水性或亲水性的影响及其几何形状的影响上。使用光学测试设备的圆盘和圆盘透镜配置作为时间的函数进行膜厚测量。彩色干涉图用高速互补金属氧化物半导体数码相机记录,并用薄膜比色法进行评估。明确的是,覆盖玻璃圆盘的铬层具有疏水性,其支持牛血清溶液中所含蛋白质的吸附,从而形成较厚的润滑膜。相反,当盘被具有亲水性的二氧化硅层覆盖时,未观察到蛋白质膜的形成。在这种情况下,仅由于流体动力作用而形成非常薄的润滑膜。尽管金属和陶瓷球的接触表面具有相对不同的润湿性,但它们对润滑剂膜的形成没有实质性影响。证实接触表面和运动条件的一致性对牛血清膜形成具有根本影响。在圆盘上的配置中,润滑膜的形成主要是由于蛋白质聚集,该聚集穿过接触区并增加了膜的厚度。在更保形的透镜上球状构造中,润滑膜主要是由于流体动力作用而形成的,因此在测量过程中膜厚度保持恒定。

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