Wu J Z, Herzog W, Epstein M
Department of Mechanical Engineering, Faculty of Engineering, The University of Calgary, Alberta, Canada.
J Biomech. 1998 Feb;31(2):165-9. doi: 10.1016/s0021-9290(97)00117-6.
The biphasic cartilage model proposed by Mow et al. (1980) has proven successful to capture the essential mechanical features of articular cartilage. In order to analyse the joint contact mechanics in real, anatomical joints, the cartilage model needs to be implemented into a suitable finite element code to approximate the irregular surface geometries of such joints. However, systematic and extensive evaluation of the capacity of commercial software for modelling the contact mechanics with biphasic cartilage layers has not been made. This research was aimed at evaluating the commercial finite element software ABAQUS for analysing biphasic soft tissues. The solutions obtained using ABAQUS were compared with those obtained using other finite element models and analytical solutions for three numerical tests: an unconfined indentation test, a test with the contact of a spherical cartilage surface with a rigid plate, and an axi-symmetric joint contact test. It was concluded that the biphasic cartilage model can be implemented into the commercial finite element software ABAQUS to analyse practical joint contact problems with biphasic articular cartilage layers.
Mow等人(1980年)提出的双相软骨模型已被证明能够成功捕捉关节软骨的基本力学特征。为了分析真实解剖关节中的关节接触力学,需要将软骨模型应用于合适的有限元代码中,以逼近此类关节不规则的表面几何形状。然而,尚未对商业软件模拟双相软骨层接触力学的能力进行系统而广泛的评估。本研究旨在评估商业有限元软件ABAQUS用于分析双相软组织的能力。将使用ABAQUS获得的解与使用其他有限元模型和解析解获得的解进行比较,进行了三个数值测试:无侧限压痕测试、球形软骨表面与刚性板接触的测试以及轴对称关节接触测试。得出的结论是,可以将双相软骨模型应用于商业有限元软件ABAQUS中,以分析具有双相关节软骨层的实际关节接触问题。