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首页> 外文期刊>Journal of intelligent material systems and structures >Adaptive ankle-foot orthoses based on superelasticity of shape memory alloys
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Adaptive ankle-foot orthoses based on superelasticity of shape memory alloys

机译:基于形状记忆合金超弹性的自适应脚踝矫形器

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摘要

This article presents two innovative adaptive solutions for the ankle-foot orthosis based on mechanical and structural stiffness control of shape memory alloys. These concepts address gait abnormality in drop foot patients for various walking conditions such as different walking speeds. In the first design, a superelastic rod provides variable torsional stiffness that is adjusted by a controlled axial load. In the second design, the active length of superelastic hinge is adjusted in order to control the bending stiffness of the element. By adjusting the stiffness, variable level of compliance is achieved at the ankle. In both concepts, during powered plantarflexion in the stance phase of the gait, energy is stored in the shape memory alloy element. Release of this energy through superelasticity enables the ankle-foot orthosis to provide the desired controlled dorsiflexion motion in the sagittal plane and to raise the foot during the swing phase of the gait. The ultimate goal is to assist the patients in achieving a more natural gait and to prevent muscle atrophy. For the presented designs, numerical simulations are carried out to evaluate the stiffness properties of the active component under different gait speeds. To this end, experimental data of human gait are used to calculate the variation in ankle stiffness. The superelastic elements mimic the experimental ankle stiffness profiles.
机译:本文介绍了两种基于形状记忆合金的机械和结构刚度控制的踝足矫形器的创新性自适应解决方案。这些概念针对各种步行条件(例如不同的步行速度)解决了脚下垂患者的步态异常。在第一种设计中,超弹性杆提供了可变的扭转刚度,可通过控制轴向载荷来调节。在第二种设计中,调节超弹性铰链的有效长度,以控制元件的弯曲刚度。通过调整刚度,可以在脚踝处达到可变的柔顺度。在这两个概念中,在步态的站立阶段进行动力足底屈曲期间,能量都存储在形状记忆合金元素中。通过超弹性释放此能量,可使踝足矫形器在矢状面内提供所需的受控背屈运动,并在步态摆动阶段使脚抬高。最终目标是帮助患者获得更自然的步态并防止肌肉萎缩。对于提出的设计,进行了数值模拟,以评估在不同步态速度下有源部件的刚度特性。为此,使用人的步态的实验数据来计算踝部僵硬度的变化。超弹性元素模仿了实验性的踝关节刚度曲线。

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