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Design of Polycentric Assistive Device for Knee Joint

机译:膝关节膝关节辅助装置的设计

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摘要

Movements of knee joints are relative motions between tibia and femur, which include rolling and sliding. Conventional wearable knee assistive device utilized a hinge joint and generates nonnegligible mismatched motions under deep flexions. To assist the knee motion including the deep flexion, we developed a polycentric assistive device for knee joints (PAD-KJ) by using two gears with the same module and different radii. These radii were designed so that the center of the smaller gear moves on the trajectory of the knee joint with small error. According to the results of parametric design, the minimum error was about 3 mm to the model trajectory of knee joint. We also proposed a torque generator for this joint. The combination of a lever arm and a linear spring with the pair of gears successfully generated the assistive torque for standing motions. According to an evaluation test, the maximum torque of the single unit was about 1.2 Nm and the assistive torque in real usage will be 4.8 Nm.
机译:膝关节的运动是胫骨和股骨之间的相对运动,包括滚动和滑动。传统的可穿戴膝杆辅助装置利用铰链接头,并在深屈曲下产生不可用的不匹配动作。为了帮助膝盖运动,包括深屈曲,通过使用具有相同模块和不同半径的两个齿轮,开发了一种用于膝关节(PAD-KJ)的多中心辅助装置。设计了这些半径,使得较小档的中心在具有小错误的膝关节的轨迹上移动。根据参数化设计的结果,膝关节的模型轨迹的最小误差约为3mm。我们还提出了一种用于该接头的扭矩发生器。杠杆臂和带有一对齿轮的线性弹簧的组合成功地产生了站立运动的辅助扭矩。根据评估测试,单个单元的最大扭矩约为1.2nm,实际使用中的辅助扭矩将是4.8nm。

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