Tribological behaviour of a synthetic synovial fluid and polyurethane in biomedical implants

Q2 Materials Science
Erik G. de Vries , Branco S. van Minnen , Yinglei Wu , David T.A. Matthews , Emile van der Heide
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引用次数: 1

Abstract

The purpose of this research is to evaluate the lubrication properties of a synthetic synovial fluid in combination with biocompatible polyurethanes, versus materials commonly used in biomedical implants. This combination is found in endurance testing of meniscal implants made from polyurethane.

Two different polyurethanes were used for friction measurements, applying a synthetic lubricant, containing a Ringer's solution, hyaluronic acid and bovine serum albumin. The results were compared with friction measurements, using a polyurethane sphere against bovine cartilage, lubricated with bovine synovial fluid. The influence of the lubricants was tested by comparing water, synthetic- and bovine synovial fluids with the various material combinations, found in existing knee implants. From the measurements it was shown that the friction pairs including metal surfaces did not show the common Stribeck behaviour, with respect to transitions from the boundary regime to full film lubrication, and friction remained relatively constant over the whole velocity range. Friction pairs including the polymer counter surfaces and the water lubricated contacts, showed the expected transitions from boundary to mixed lubrication. From this it was concluded that protein adsorption mainly defined the frictional behaviour when using metal surfaces, leading to a coefficient of friction (COF)≈0.2 using synthetic synovial fluid, and COF≈0.15 when using bovine synovial fluid. PEEK samples showed higher values in the boundary lubrication region, which decreased to values of COF≈0.1 at higher velocities. Polyethylene samples showed higher friction results, which was attributed to the surface roughness. From the observed friction results and wear tracks it was concluded that a synthetic synovial lubricant performs very well with all material combinations, when more attention is paid to the polyethylene surface finish.

生物医学植入物中合成滑液和聚氨酯的摩擦学行为
本研究的目的是评估合成滑液与生物相容性聚氨酯结合的润滑性能,与生物医学植入物中常用的材料相比。这种组合在聚氨酯制成的半月板植入物的耐久性测试中被发现。两种不同的聚氨酯被用于摩擦测量,应用一种合成润滑剂,含有林格溶液,透明质酸和牛血清白蛋白。结果比较摩擦测量,使用聚氨酯球对牛软骨,润滑牛滑液。通过将水、合成液和牛滑液与现有膝关节植入物中发现的各种材料组合进行比较,测试了润滑剂的影响。从测量结果可以看出,包括金属表面在内的摩擦副在从边界状态过渡到全膜润滑方面没有表现出常见的斯特里贝克行为,并且摩擦在整个速度范围内保持相对恒定。摩擦副包括聚合物表面和水润滑接触,表现出预期的从边界到混合润滑的转变。由此得出结论,蛋白质吸附主要决定了金属表面的摩擦行为,导致合成滑液的摩擦系数(COF)≈0.2,牛滑液的摩擦系数(COF)≈0.15。PEEK样品在边界润滑区表现出较高的数值,在较高的速度下下降到COF≈0.1。聚乙烯样品表现出更高的摩擦结果,这归因于表面粗糙度。从观察到的摩擦结果和磨损轨迹可以得出结论,当更多地关注聚乙烯表面光洁度时,合成滑膜润滑剂在所有材料组合中都表现良好。
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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来源期刊
Biotribology
Biotribology Materials Science-Surfaces, Coatings and Films
CiteScore
4.20
自引率
0.00%
发文量
17
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