首页> 外文会议>Mechanisms and robotics conference;ASME international design engineering technical conferences and computers and information in engineering conference >DESIGN AND EVALUATION OF A PASSIVE ANKLE PROSTHESIS WITH ROTATIONAL POWER GENERATION BY A COMPLIANT COUPLING BETWEEN LEG DEFLECTION AND ANKLE ROTATION
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DESIGN AND EVALUATION OF A PASSIVE ANKLE PROSTHESIS WITH ROTATIONAL POWER GENERATION BY A COMPLIANT COUPLING BETWEEN LEG DEFLECTION AND ANKLE ROTATION

机译:腿偏斜与踝关节旋转耦合的被动旋转式被动踝假体的设计与评估

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This paper presents the design and simulation results of a passive prosthetic ankle prosthesis that has mechanical behavior similar to a natural ankle. The presented design achieves active behavior with powered push-off to propel the body forward. The design contains a conventional compression spring network that allows coupling between two degrees of freedom. There is a translational degree of freedom along the leg and a rotational degree of freedom about the ankle joint. During a standard gait cycle, potential energy from the person's weight is stored in the spring network from deflection along the leg. The energy is released by the spring network as rotation of the foot. With this design, capping the allowable leg deflection at 15 millimeters produces 45% of the rotational work that a natural ankle will produce. This is based on simulation using published average kinetic and kinematic data from gait analyses.
机译:本文介绍了具有与自然踝相似的机械性能的被动假肢踝关节假体的设计和仿真结果。提出的设计通过电动推杆实现主动行为,以推动身体向前。该设计包含一个常规的压缩弹簧网络,该网络允许两个自由度之间进行耦合。沿着腿有平移自由度,而围绕踝关节有旋转自由度。在标准步态周期中,人体重量产生的势能由于沿腿部的挠曲而存储在弹簧网络中。弹簧通过脚的旋转释放能量。通过这种设计,将允许的腿部挠曲限制在15毫米以内,可以产生自然脚踝产生的旋转功的45%。这是基于使用步态分析发布的平均动力学和运动学数据进行的模拟。

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