Transient Elastohydrodynamic Lubrication Analysis of a Novel Metal-On-Metal Hip Prosthesis with a Non-Spherical Femoral Bearing Surface

Author:

Meng Q E1,Liu F1,Fisher J1,Jin Z M1

Affiliation:

1. Institute of Medical and Biological Engineering, School of Mechanical Engineering, University of Leeds, Leeds, UK

Abstract

Effective lubrication performance of metal-on-metal hip implants only requires optimum conformity within the main loaded area, while it is advantageous to increase the clearance in the equatorial region. Such a varying clearance can be achieved by using non-spherical bearing surfaces for either acetabular or femoral components. An elastohydrodynamic lubrication model of a novel metal-on-metal hip prosthesis using a non-spherical femoral bearing surface against a spherical cup was solved under loading and motion conditions specified by ISO standard. A full numerical methodology of considering the geometric variation in the rotating non-spherical head in elastohydrodynamic lubrication solution was presented, which is applicable to all non-spherical head designs. The lubrication performance of a hip prosthesis using a specific non-spherical femoral head, Alpharabola, was analysed and compared with those of spherical bearing surfaces and a non-spherical Alpharabola cup investigated in previous studies. The sensitivity of the lubrication performance to the anteversion angle of the Alpharabola head was also investigated. Results showed that the non-spherical head introduced a large squeeze-film action and also led to a large variation in clearance within the loaded area. With the same equatorial clearance, the lubrication performance of the metal-on-metal hip prosthesis using an Alpharabola head was better than that of the conventional spherical bearings but worse than that of the metal-on-metal hip prosthesis using an Alpharabola cup. The reduction in the lubrication performance caused by the initial anteversion angle of the non-spherical head was small, compared with the improvement resulted from the non-spherical geometry.

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Medicine

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1. Optimal shape design of spherical squeeze film bearings using genetic algorithms;Tribology International;2023-12

2. Non‐spherical shape optimization of artificial hip joint based on elastohydrodynamic lubrication analysis;Journal of Applied Polymer Science;2023-04-20

3. Method for determining the effect of nonspherical head geometry in hip joint implants on contact pressures;Research on Biomedical Engineering;2022-09-01

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