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Variable Interlock Mechanism Joining Shoulder Rotation and Elbow Flexion for Body-Powered Upper Limb Prostheses

机译:可变联动机构,结合肩旋转和肘部弯曲,用于身体动力的上肢假体

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People with upper limb amputations wearing body-powered prostheses perform elbow joint flexion and opening/closing the terminal device by pulling one control cable with the contralateral shoulder. When moving the terminal device close to the mouth during eating, the socket obstructs shoulder rotation motion. In this paper, we developed the variable interlock mechanism to realize shoulder rotation and elbow flexion simultaneously by pulling only one control cable for a body-powered prosthesis. We propose a mechanism consisting of a differential bevel gear and a continuous variable transmission (CVT) unit with a conical cone and roller. With the CVT unit, the user can change the interlocking relationship without multiple steps. The number of teeth of the bevel gear, the radius of conical cone, and roller were designed to realize the interlocking motion of the inner rotation of the shoulder joint at 80° when the elbow flexion angle is 145°. We measure the terminal device trajectory and each joint angle by fixing the prosthesis with the proposed mechanism in an aluminum frame and by pulling the control cable from the top using a motion capture system. For the two conditions of the designed CVT ratio (kσ=1.00, 3.46), the measured CVT ratio becomes ki=1.04, 1.54. We confirm the interlocking motion of our mechanism, and the error between designed and measured CVT ratio can be improved by reducing the backlash of the bevel gear and the slip between the conical cone and the roller at the CVT unit.
机译:上肢截肢者穿着身体假肢,通过对侧肩膀拉一根控制电缆来执行肘关节弯曲和打开/关闭终端设备的操作。在进食过程中将终端设备靠近嘴部移动时,插座会阻碍肩部旋转。在本文中,我们开发了可变联锁机构,通过仅拉动一根用于身体动力的假体的控制电缆,即可同时实现肩部旋转和肘部屈曲。我们提出了一种由差速器锥齿轮和带有圆锥形圆锥和滚子的无级变速器(CVT)单元组成的机构。使用CVT单元,用户无需多个步骤即可更改互锁关系。设计锥齿轮的齿数,圆锥锥的半径和滚子,以在肘部弯曲角度为145°时实现80°时肩关节内部旋转的互锁运动。我们通过使用拟议的机制将假体固定在铝制框架中,并使用运动捕捉系统从顶部拉动控制电缆,来测量终端设备的轨迹和每个关节的角度。对于设计的CVT比率的两个条件(k σ = 1.00,3.46),测得的CVT比变为k i = 1.04、1.54。我们确认了我们机构的互锁运动,并且通过减小锥齿轮的齿隙以及CVT单元上圆锥锥和滚子之间的打滑,可以改善设计和测量的CVT比率之间的误差。

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