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用于减少因支具导致的膝关节扭矩偏差的介电弹性体人体能量收集研究。

Investigation of dielectric elastomer human energy harvesting to reduce knee joint torque deviation due to bracing.

作者信息

Lai Heather, Reid Kristina

机构信息

Division of Engineering Programs, State University of New York at New Paltz, New Paltz, NY, USA.

Pharmacy and Health Science, Wayne State University, Detroit, MI, USA.

出版信息

J Rehabil Assist Technol Eng. 2019 Oct 15;6. doi: 10.1177/2055668319862140. eCollection 2019 Jan-Dec.

Abstract

INTRODUCTION

The use of a smart electromechanical material, dielectric elastomer, is investigated for the development of an active bracing technique, which modifies the stiffness and damping of the knee brace during energy harvesting so as to reduce knee joint torque deviation during late swing in braced walking.

METHODS

The bracing technique considered involves a dielectric elastomer energy harvesting cycle, which activates only when the knee flexor muscles are contracting eccentrically during late swing. The brace reduces the leg extension deviation during late swing in braced walking by transforming a portion of the mechanical stored energy into electrical energy, reducing the required internal work performed within the body.

RESULTS

Simulated behavior of the dielectric elastomer brace worn across the knee joint demonstrates that when properly activated, the dielectric elastomer brace's reduction in stiffness and increase in damping minimize the added energy expenditure of knee joint bracing during late swing.

CONCLUSIONS

The modeling results demonstrate the effective application of a soft, circumferential, dielectric elastomer energy harvesting knee brace, which utilizes the changes in the dynamic behavior of the knee joint occurring during energy harvesting in order to reduce the added demand placed on the knee joint under braced conditions.

摘要

引言

研究了一种智能机电材料——介电弹性体,用于开发一种主动支撑技术,该技术在能量收集过程中改变膝关节支撑的刚度和阻尼,以减少支撑行走后期摆动时膝关节扭矩偏差。

方法

所考虑的支撑技术涉及一个介电弹性体能量收集循环,该循环仅在支撑行走后期摆动时膝关节屈肌偏心收缩时启动。通过将一部分机械能转化为电能,支撑装置减少了支撑行走后期摆动时腿部伸展偏差,减少了身体内部所需的功。

结果

模拟膝关节佩戴介电弹性体支撑装置的行为表明,当正确启动时,介电弹性体支撑装置刚度的降低和阻尼的增加可将支撑行走后期摆动时膝关节支撑的额外能量消耗降至最低。

结论

建模结果表明,一种柔软的、环绕式的、介电弹性体能量收集膝关节支撑装置得到了有效应用,该装置利用能量收集过程中膝关节动态行为的变化,以减少支撑条件下膝关节的额外需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7670/6796204/4bfb7981b810/10.1177_2055668319862140-fig1.jpg

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