Galbusera Fabio, Bashkuev Maxim, Wilke Hans-Joachim, Shirazi-Adl Aboulfazl, Schmidt Hendrik
a IRCCS Istituto Ortopedico Galeazzi , Milan , Italy.
Comput Methods Biomech Biomed Engin. 2014;17(12):1323-34. doi: 10.1080/10255842.2012.745858. Epub 2012 Dec 18.
Capabilities of the commercial finite element package ABAQUS in simulating frictionless contact between two saturated porous structures were evaluated and compared with those of an open source code, FEBio. In ABAQUS, both the default contact implementation and another algorithm based on an iterative approach requiring script programming were considered. Test simulations included a patch test of two cylindrical slabs in a gapless contact and confined compression conditions; a confined compression test of a porous cylindrical slab with a spherical porous indenter; and finally two unconfined compression tests of soft tissues mimicking diarthrodial joints. The patch test showed almost identical results for all algorithms. On the contrary, the confined and unconfined compression tests demonstrated large differences related to distinct physical and boundary conditions considered in each of the three contact algorithms investigated in this study. In general, contact with non-uniform gaps between fluid-filled porous structures could be effectively simulated with either ABAQUS or FEBio. The user should be aware of the parameter definitions, assumptions and limitations in each case, and take into consideration the physics and boundary conditions of the problem of interest when searching for the most appropriate model.
评估了商业有限元软件包ABAQUS在模拟两个饱和多孔结构之间无摩擦接触方面的能力,并与开源代码FEBio的能力进行了比较。在ABAQUS中,考虑了默认的接触实现方法以及另一种基于需要脚本编程的迭代方法的算法。测试模拟包括在无间隙接触和侧限压缩条件下对两个圆柱形平板的面片测试;对带有球形多孔压头的多孔圆柱形平板进行侧限压缩测试;最后是模拟滑膜关节的软组织的两次无侧限压缩测试。面片测试对所有算法都显示出几乎相同的结果。相反,侧限和无侧限压缩测试表明,与本研究中研究的三种接触算法中每种算法所考虑的不同物理和边界条件相关存在很大差异。一般来说,使用ABAQUS或FEBio都可以有效地模拟流体填充多孔结构之间具有不均匀间隙的接触。用户应了解每种情况下的参数定义、假设和局限性,并在寻找最合适的模型时考虑感兴趣问题的物理和边界条件。