Meng Qingen, Jin Zhongmin, Fisher John, Wilcox Ruth
Institute of Medical and Biological Engineering, School of Mechanical Engineering, University of Leeds, Leeds, UK.
Proc Inst Mech Eng H. 2013 Sep;227(9):1009-19. doi: 10.1177/0954411913483537. Epub 2013 Jun 26.
Articular cartilage plays an important role in the function of diarthrodial joints. Computational methods have been used to study the biphasic mechanics of cartilage, and Abaqus has been one of the most widely used commercial software packages for this purpose. A newly developed open-source finite element solver, FEBio, has been developed specifically for biomechanical applications. The aim of this study was to undertake a direct comparison between FEBio and Abaqus for some practical contact problems involving cartilage. Three model types, representing a porous flat-ended indentation test, a spherical-ended indentation test, and a conceptual natural joint contact model, were compared. In addition, a parameter sensitivity study was also performed for the spherical-ended indentation test to investigate the effects of changes in the input material properties on the model outputs, using both FEBio and Abaqus. Excellent agreement was found between FEBio and Abaqus for all of the model types and across the range of material properties that were investigated.
关节软骨在动关节的功能中起着重要作用。计算方法已被用于研究软骨的双相力学,而Abaqus一直是为此目的使用最广泛的商业软件包之一。一种新开发的开源有限元求解器FEBio,是专门为生物力学应用而开发的。本研究的目的是针对一些涉及软骨的实际接触问题,对FEBio和Abaqus进行直接比较。比较了三种模型类型,分别代表多孔平头压痕试验、球头压痕试验和概念性自然关节接触模型。此外,还对球头压痕试验进行了参数敏感性研究,以研究使用FEBio和Abaqus时输入材料属性的变化对模型输出的影响。在所有模型类型以及所研究的材料属性范围内,FEBio和Abaqus之间都发现了极好的一致性。