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Numerical modeling of synovial fluid layer

机译:滑膜流体层的数值模拟

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One of the most challenging problems is the wear of articular cartilage caused by the surfaces sliding over each other. It could be reduced with benefit of synovial layer which have the unique lubrication properties. This paper develops the model of fluid layer based on the Markov theory. In our study, we consider the synovial fluid as two-phase fluid with solid and liquid phase within the joint capsule to consider frictional characteristics. The solid phase formed by the wear particle detachment from the articular cartilage surface during the sliding, and liquid phase formed by the lubricant, synovial fluid. We found the mean of the distribution and the changes in the deviation of the state of contact ?(t) between the articulating surfaces during sliding, and estimate the survival of the articulating surfaces from tribological point of view during the joint activity.
机译:最具挑战性的问题之一是由彼此滑动的表面引起的关节软骨的磨损。它可以减少具有独特润滑性质的滑膜层的益处。本文发展了基于马尔可夫理论的流体层模型。在我们的研究中,我们将滑膜流体视为具有固体和液相的两相流体,在关节胶囊内,以考虑摩擦特性。通过磨损颗粒从滑动期间从关节软骨表面脱离形成的固相,以及由润滑剂,滑膜流体形成的液相。我们发现分布的平均值和铰接表面在滑动过程中的接触状态偏差的变化,并在关节活动期间估计了铰接性的铰接表面的存活率。

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