A prosthetic knee using magnetorhelogical fluid damper for above-knee amputees

IF 2.2 3区 工程技术 Q2 ENGINEERING, CIVIL Smart Structures and Systems Pub Date : 2015-04-02 DOI:10.1117/12.2083753
Jinhyuk Park, Seung-bok Choi
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引用次数: 4

Abstract

A prosthetic knee for above-knee (AK) amputees is categorized into two types; namely a passive and an active type. The passive prosthetic knee is generally made by elastic materials such as carbon fiber reinforced composite material, titanium and etc. The passive prosthetic knee easy to walk. But, it has disadvantages such that a knee joint motion is not similar to ordinary people. On the other hand, the active prosthetic knee can control the knee joint angle effectively because of mechanical actuator and microprocessor. The actuator should generate large damping force to support the weight of human body. But, generating the large torque using small actuator is difficult. To solve this problem, a semi-active type prosthetic knee has been researched. This paper proposes a semi-active prosthetic knee using a flow mode magneto-rheological (MR) damper for AK amputees. The proposed semi-active type prosthetic knee consists of the flow mode MR damper, hinge and prosthetic knee body. In order to support weight of human body, the required energy of MR damper is smaller than actuator of active prosthetic leg. And it can control the knee joint angle by inducing the magnetic field during the stance phase.
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一种用于膝上截肢者的磁流变液阻尼假膝
膝上截肢者的假膝分为两种类型;即被动型和主动型。被动式假膝一般由碳纤维增强复合材料、钛等弹性材料制成。被动式假膝易于行走。但是,它的缺点是膝关节的运动与普通人不同。另一方面,由于采用了机械驱动器和微处理器,主动假膝可以有效地控制膝关节角度。执行机构应产生较大的阻尼力以支撑人体的重量。但是,用小的驱动器产生大的扭矩是困难的。为了解决这一问题,研究了半主动型假膝。本文提出了一种采用流动模式磁流变阻尼器的半主动假肢膝关节,用于AK截肢患者。所提出的半主动式假膝由流动型磁流变阻尼器、铰链和假膝体组成。为了支撑人体的重量,MR阻尼器所需的能量比主动假肢腿的执行器要小。在站立阶段通过感应磁场来控制膝关节角度。
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来源期刊
Smart Structures and Systems
Smart Structures and Systems 工程技术-工程:机械
CiteScore
6.50
自引率
8.60%
发文量
0
审稿时长
9 months
期刊介绍: An International Journal of Mechatronics, Sensors, Monitoring, Control, Diagnosis, and Management airns at providing a major publication channel for researchers in the general area of smart structures and systems. Typical subjects considered by the journal include: Sensors/Actuators(Materials/devices/ informatics/networking) Structural Health Monitoring and Control Diagnosis/Prognosis Life Cycle Engineering(planning/design/ maintenance/renewal) and related areas.
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