NUMERICAL ANALYSIS OF VISCOELASTOHYDRODYNAMIC LUBRICATION IN KNEE PROSTHESIS WITH NON-NEWTONIAN FLUID

IF 0.1 Q4 PHYSICS, MULTIDISCIPLINARY
L.E. Robledo Blasco, B. Weiss, M. Berli, J. Di Paolo
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引用次数: 0

Abstract

In this work, a computational model of thin film lubrication applied to a knee prosthesis was designed in order to make a comparison between three constitutive models, i.e. a power law, the Carreau-Yasuda model and the Cross model. The equivalent model of the knee prosthesis was modeled as a rigid cylinder on a deformable plane. The mechanical behavior of the deformable component representing the tibial base was assumed as a viscoelastic Standard Linear Solid(SLS). The governing equations were solved simultaneously with the determination of a free-moving boundary by implementing it in COMSOL Multiphysics software. The results obtained showed that the Cross model presents the highest shear rate value, the lowest film thickness and the dynamic viscosity with less variation along the lubrication channel, reaching a minimum viscosity value of 0.02 Pa.s. The Carreau-Yasuda model presents the highest value of friction coefficient, being 21.5 % higher than for the Power Law model and 3.67 % higher than the Cross model.
非牛顿流体膝关节假体粘弹流体动力润滑的数值分析
在这项工作中,为了比较三种本构模型,即幂律、careau - yasuda模型和Cross模型,设计了一个应用于膝关节假体的薄膜润滑计算模型。将膝关节假体等效模型建模为可变形平面上的刚性圆柱体。将代表胫骨基底的可变形构件的力学行为假设为粘弹性标准线性实体(SLS)。在COMSOL Multiphysics软件中实现了控制方程的求解和自由运动边界的确定。结果表明,Cross模型的剪切速率值最高,膜厚最小,动态粘度沿润滑通道变化较小,最小粘度值为0.02 Pa.s。carau - yasuda模型的摩擦系数最高,比幂律模型高21.5%,比Cross模型高3.67%。
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来源期刊
Anales AFA
Anales AFA PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.40
自引率
0.00%
发文量
43
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