首页> 外文会议>2012 4th IEEE RAS amp; EMBS International Conference on Biomedical Robotics and Biomechatronics >Conception and evaluation of a novel variable torsion stiffness for biomechanical applications
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Conception and evaluation of a novel variable torsion stiffness for biomechanical applications

机译:用于生物力学应用的新型抗扭刚度的概念和评估

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This paper proposes a novel variable torsion stiffness (VTS) aiming on biomechanical applications like prosthetic knee joints. By varying the effective length of a torsional elastic element via a relocatable counter bearing, the stiffness of a rotational joint is adjusted. This functional concept is described in detail by the authors as well as the design of such VTS joints. Additionally, analytical models for the transfer behaviour of drivetrain and stiffness control are derived. These are used for a simulative evaluation of a pendulum driven by a VTS unit. Based on the results of this simulation, the power requirements of VTS are analysed. Furthermore, an analysis of its structural strength is presented. For practical comprehensibility, the example of the design of a prosthetic knee joint is taken up for several times in this paper. Finally, the concept, modeling and design of VTS as well as the simulation results are concluded and discussed in a final assessment and in comparison to other contemporary concepts.
机译:本文针对诸如膝关节假体的生物力学应用提出了一种新颖的可变扭转刚度(VTS)。通过可重定位的反向轴承改变扭转弹性元件的有效长度,可以调节旋转接头的刚度。作者详细描述了此功能概念以及此类VTS接头的设计。此外,还得出了传动系统传递行为和刚度控制的分析模型。这些用于模拟评估由VTS单元驱动的摆。根据仿真结果,分析了VTS的功率需求。此外,介绍了其结构强度。为了便于理解,本文以假肢膝关节设计为例进行了多次讨论。最后,对VTS的概念,建模和设计以及仿真结果进行了总结和讨论,并进行了最终评估,并与其他当代概念进行了比较。

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