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IMPACT OF ADHESION AND VISCOSITY FORCES ON FRICTION VARIATIONS IN BIO-TRIBOLOGICAL SYSTEMS

机译:粘附和粘度力对生物摩擦系统摩擦变异的影响

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摘要

The classical theory of lubrication holds that the lubricant dynamic viscosity increments cause the increments of hydrodynamic pressure, as well as friction forces and wear. In the case of high values of hydrodynamic pressure, it very often has a significant impact on the friction coefficient. New achievements in the field of micro-and nano-tribology provide for new hypotheses on the decrements and increments of the friction coefficient in the case of the lubricant viscosity increments. Experimental investigations have shown that, even in the case of decrements of the friction coefficient with the lubricant viscosity increments, such decrements are very often lower than simultaneous hydrodynamic pressure increments which results in the friction force increments with the lubricant viscosity increments. In biological friction nods, we can observe a varied impact of the biological lubricant viscosity on the friction force and friction coefficient values. The abovementioned impact is caused by the adhesion and cohesion forces occurring between the biological fluid particles flowing around the phospholipid bilayer on the superficial layer of the cartilage with varied wettability and hydrogen ion concentration. The wettability (We) and power hydrogen ion concentration (pH) have a significant impact on the physiological fluid or biological lubricant viscosity variations and, as a result, on the friction forces and friction coefficient. This paper describes the abovementioned impact and the process of friction forces and friction coefficients variations in biological friction nods.
机译:经典的润滑理论认为润滑剂动态粘度增量导致流体动力学压力的增量,以及摩擦力和磨损。在高流动压力值的情况下,通常对摩擦系数产生重大影响。微型和纳米摩擦学领域的新成就为润滑剂粘度增量的情况下摩擦系数的减小和增量的新的假设提供了新的假设。实验研究表明,即使在润滑剂粘度增量的摩擦系数下降的情况下,这种递减通常通常低于同时的流体动力学压力增量,这导致摩擦力增量的润滑剂粘度增量。在生物摩擦点头中,我们可以观察到生物润滑剂粘度对摩擦力和摩擦系数值的不同影响。上述撞击是由在软骨浅层的磷脂双层周围流动的生物流体颗粒之间发生的粘附和内聚力引起的,具有变化的润湿性和氢离子浓度。润湿性(We)和功率氢离子浓度(pH)对生理流体或生物润滑剂粘度变化具有显着影响,并且因此在摩擦力和摩擦系数上产生。本文描述了生物摩擦点头的上述影响和摩擦力和摩擦系数变化的过程。

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