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Biomimetic Design of a Planar Torsional Spring to an Active Knee Prosthesis Actuator Using FEM Analysis

机译:使用FEM分析的平面扭转弹簧的平面扭转弹簧的仿生设计

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Lower-limb prostheses have an important function to partially recover the leg movement after amputation. In order to improve the mechanical joint behavior towards a healthy human knee, compliant elements have been introduced to the active prostheses, comprised of the well-known Series Elastic Actuators (SEAs). SEAs are used in lower-limb assistive devices due to their ability to tolerate impacts and passive store mechanical energy during ground-walking. Based on the healthy human knee in the stance phase of walking, this paper brings the design, prototyping, and analysis of a customized planar torsional spring. To enhance the compliance of a rigid active knee prosthesis, the proposed spring will substitute a torque flange between the transmission and the output of the actuator, and this carries a series of constraints to the design. The finite element method (FEM) is applied to the development and exploration of the three initially proposed geometries and the material selection along with its heat treatment is based on the maximum stress obtained in the simulations. The proposed geometry, chosen by comparison of the three, is made of austempered AISI 4340 steel and using two springs in parallel and it has a torsional stiffness of 250 N.m/rad with maximum angular displacement of ± 2.5° and 0.153 kg. In future work, we intend to compare the results of the rigid actuator against the SEA one during walking over the ground.
机译:下肢假体具有重要的功能,可以在截肢后部分恢复腿部运动。为了改善朝向健康人膝部的机械接头行为,已经将柔顺的元素引入有源假体,包括着名的众所周知的系列弹性致动器(SEA)。由于能够在地面行走期间耐受冲击和被动储存机械能的能力,海洋用于下肢辅助装置。基于Stance阶段的健康人膝关节,本文带来了定制平面扭转弹簧的设计,原型设计和分析。为了增强刚性活跃的膝关节假体的符合性,所提出的弹簧将替代致动器的变速器和输出之间的扭矩法兰,这对设计进行了一系列限制。有限元方法(FEM)应用于三个最初提出的几何形状的显影和探索,并且材料选择以及其热处理基于模拟中获得的最大应力。所选择的几何形状,由三者进行比较,由不稳定的AISI 4340钢制成,并平行使用两个弹簧,它具有250 n.m / rad的扭转刚度,具有最大角位移的± 2.5°和0.153千克。在未来的工作中,我们打算在走过地面期间将刚性执行器的结果与海面进行比较。

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