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A Planar Model of an Ankle Joint with Optimized Material Parameters and Hertzian Contact Pairs

机译:具有优化材料参数和赫兹接触对的踝关节平面模型

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摘要

The ankle is one of the most complicated joints in the human body. Its features a plethora of elements with complex behavior. Their functions could be better understood using a planar model of the joint with low parameter count and low numerical complexity. In this study, an accurate planar model of the ankle with optimized material parameters was presented. In order to obtain the model, we proposed an optimizational approach, which fine-tuned the material parameters of two-dimensional links substituting three-dimensional ligaments of the ankle. Furthermore, the cartilage in the model was replaced with Hertzian contact pairs. The model was solved in statics under moment loads up to 5 Nm. The obtained results showed that the structure exhibited angular displacements in the range of the ankle joint and that their range was higher in dorsiflexion than plantarflexion. The structure also displayed a characteristic ramp up of the angular stiffness. The results obtained from the optimized model were in accordance with the experimental results for the ankle. Therefore, the proposed method for fine-tuning the material parameters of its links could be considered viable.
机译:脚踝是人体中最复杂的关节之一。它具有众多具有复杂行为的元素。使用具有低参数数量和低数值复杂性的平面平面模型可以更好地理解它们的功能。在这项研究中,提出了具有优化材料参数的精确踝关节平面模型。为了获得模型,我们提出了一种优化方法,该方法微调了二维链节的材料参数,以替代踝关节的三维韧带。此外,模型中的软骨被赫兹接触对代替。该模型在力矩载荷高达5 Nm的情况下通过静力学求解。获得的结果表明,该结构在踝关节的范围内表现出角位移,并且它们的背屈范围比range屈范围高。该结构还显示出角刚度的特征性上升。从优化模型获得的结果与脚踝的实验结果一致。因此,所提出的微调其链节的材料参数的方法被认为是可行的。

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