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首页> 外文期刊>Annals of Biomedical Engineering >Experimental Friction Coefficients for Bovine Cartilage Measured with a Pin-on-Disk Tribometer: Testing Configuration and Lubricant Effects
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Experimental Friction Coefficients for Bovine Cartilage Measured with a Pin-on-Disk Tribometer: Testing Configuration and Lubricant Effects

机译:用针盘式摩擦计测量牛软骨的实验摩擦系数:测试配置和润滑效果

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The friction coefficient between wet articular cartilage surfaces was measured using a pin-on-disk tribometer adopting different testing configurations: cartilage-on-pin vs. alumina-on-disk (CA); cartilage-on-pin vs. cartilage-on-disk (CC); and alumina-on-pin vs. cartilage-on-disk (AC). Several substances were dissolved in the phosphate buffered saline (PBS) solution to act as lubricants: 10,000 molecular weight (MW) polyethylene glycol (PEG), 100,000 MW PEG, and chondroitin sulfate (CS), all at 100 mg/mL concentration. Scanning electron microscopy photographs of the cartilage specimens revealed limited wear due to the experiment. Conducting the experiments in PBS solutions we provide evidence according to which a commercial pin-on-disk tribometer allows us to assess different lubrication mechanisms active in cartilage. Specifically, we find that the measured friction coefficient strongly depends on the testing configuration. Our results show that the friction coefficient measured under CC and AC testing configurations remains very low as the sliding distance increases, probably because during the pin displacement the pores present in the cartilage replenish with PBS solution. Under such conditions the fluid phase supports a large load fraction for long times. By systematically altering the composition of the PBS solution we demonstrate the importance of solution viscosity in determining the measured friction coefficient. Although the friction coefficient remains low under the AC testing configuration in PBS, 100 mg/mL solutions of both CS and 100,000 MW PEG in PBS further reduce the friction coefficient by ~40%. Relating the measured friction coefficient to the Hersey number, our results are consistent with a Stribeck curve, confirming that the friction coefficient of cartilage under the AC testing configuration depends on a combination of hydrodynamic, boundary, and weep bearing lubrication mechanisms.
机译:湿关节软骨表面之间的摩擦系数是通过采用不同测试配置的针盘摩擦计测量的:针软骨与盘氧化铝(CA);销钉软骨与磁盘软骨(CC);以及针上氧化铝与磁盘软骨(AC)。将几种物质溶解在磷酸盐缓冲盐水(PBS)溶液中作为润滑剂:10,000分子量(MW)的聚乙二醇(PEG),100,000 MW PEG和硫酸软骨素(CS),所有浓度均为100 mg / mL。软骨标本的扫描电子显微镜照片显示,由于实验,磨损有限。在PBS溶液中进行实验,我们提供了证据,根据该证据,商业上的销钉盘式摩擦计允许我们评估软骨中活跃的不同润滑机制。具体而言,我们发现测得的摩擦系数在很大程度上取决于测试配置。我们的研究结果表明,在CC和AC测试配置下,随着滑动距离的增加,摩擦系数仍然很低,这可能是因为在销钉移位期间,软骨中存在的孔补充了PBS溶液。在这种情况下,液相会长时间支撑较大的负载分数。通过系统地改变PBS溶液的组成,我们证明了溶液粘度在确定测得的摩擦系数中的重要性。尽管在PBS的AC测试配置下摩擦系数仍然很低,但CS和100,000 MW PEG在PBS中的100 mg / mL溶液进一步使摩擦系数降低了约40%。将测得的摩擦系数与Hersey数相关,我们的结果与Stribeck曲线一致,这证实了在AC测试配置下软骨的摩擦系数取决于流体动力,边界和润湿轴承润滑机制的组合。

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