On Possibility of Application of COMSOL Multiphysics Software for Topological Optimization of Osteosynthesis Plates

D. A. Stepanenko, I. Mudinov, V. A. Akhremchyk, V. A. Akhremchyk
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Abstract

Тhe paper describes a technique of topological optimization of osteosynthesis plates used for internal fixation of bone fractures. The proposed technique is based on the application of the density method and the commercially available COMSOL Multiphysics software intended for finite element modeling. A comparative analysis of the characteristics (axial stiffness, volume and maximum von Mises stress) is presented for initial design of the plate and two optimized variants of the design. It has been established that the optimized variants provide a reduction in the plate volume by 49–54 %. In this case, the axial stiffness decreases by 43–53 %, which is a positive effect in terms of minimizing the effect of stress shielding. The optimized variants of the design possess close values of axial stiffness and maximum von Mises stress, however, in one of them, deflection of the axial segments occurs, resulting in an increase in the total strain energy, which is used as an objective function during optimization. In the variant 2 of the design, the deflection of the longitudinal segments of the plate is eliminated due to the presence of a transverse bridge between them, and the total strain energy takes on a lower value. The variant of the design without a bridge should be additionally studied, since shear stresses resulting from the contact interaction of the longitudinal segments of the plate with the bone can have a positive effect on regeneration of the bone tissue.
COMSOL多物理场软件应用于接骨板拓扑优化的可能性
Тhe论文介绍了一种用于骨折内固定的骨合成板的拓扑优化技术。提出的技术是基于密度法的应用和商业上可用的COMSOL Multiphysics软件,用于有限元建模。对比分析了板的初始设计和两种优化设计的特性(轴向刚度、体积和最大冯米塞斯应力)。结果表明,优化后的变异体可使板体积减小49% ~ 54%。在这种情况下,轴向刚度降低了43 - 53%,这对减小应力屏蔽的影响是一个积极的影响。优化后的设计变体具有相近的轴向刚度和最大von Mises应力值,但在其中一个变体中,轴向段发生挠曲,导致总应变能增加,并将其作为优化时的目标函数。在设计的变体2中,由于板的纵段之间存在横向桥梁,因此消除了板的挠度,并且总应变能取较低的值。没有桥的设计变体应该进行额外的研究,因为由板与骨的纵段接触相互作用产生的剪切应力可以对骨组织的再生产生积极的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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