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Comparison of Meshing Strategies in THR Finite Element Modelling

机译:有限元建模中的网格划分策略比较

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摘要

In biomechanics and orthopedics, finite element modelling allows simulating complex problems, and in the last few years, it has been widely used in many applications, also in the field of biomechanics and biotribology. As is known, one crucial point of FEM (finite element model) is the discretization of the physical domain, and this procedure is called meshing. A well-designed mesh is necessary in order to achieve accurate results with an acceptable computational effort. The aim of this work is to test a finite element model to simulate the dry frictionless contact conditions of a hip joint prosthesis (a femoral head against an acetabular cup) in a soft bearing configuration by comparing the performances of 12 common meshing strategies. In the simulations, total deformation of the internal surface of the cup, contact pressure, and the equivalent von Mises stress are evaluated by using loads and kinematic conditions during a typical gait, obtained from a previous work using a musculoskeletal multibody model. Moreover, accounting for appropriate mesh quality metrics, the results are discussed, underlining the best choice we identified after the large amount of numerical simulations performed.
机译:在生物力学和整形外科中,有限元建模可以模拟复杂的问题,并且在最近几年中,它已广泛用于许多应用程序中,也应用于生物力学和生物摩擦学领域。众所周知,FEM(有限元模型)的关键点是物理域的离散化,这一过程称为网格划分。一个精心设计的网格是必要的,以便以可接受的计算量来获得准确的结果。这项工作的目的是通过比较12种常见的啮合策略的性能来测试有限元模型,以模拟软支撑结构中的髋关节假体(股骨头与髋臼杯)的干式无摩擦接触条件。在模拟中,使用肌肉骨骼多体模型从以前的工作中获得的典型步态中的载荷和运动条件,评估了杯内表面的总变形,接触压力和等效的冯·米塞斯应力。此外,考虑到适当的网格质量度量标准,对结果进行了讨论,强调了我们在进行大量数值模拟后确定的最佳选择。

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