Characteristics of Temperature–Pressure of Metal-Hydride Actuation System Using Hydrogen Pressure Change

被引:0
作者
Kyong Kim
Tae-Kyu Kwon
机构
[1] Jeonbuk National University,Division of Biomedical Engineering, College of Engineering
[2] Jeonbuk National University,Research Center for the Healthcare and Welfare Instrument of the Aged
来源
International Journal of Precision Engineering and Manufacturing | 2020年 / 21卷
关键词
Metal-hydride actuator; Hydrogen pressure; Characteristics of temperature–pressure; Rehabilitative system; Peltier control;
D O I
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中图分类号
学科分类号
摘要
This paper is an analysis of driving characteristics of a metal-hydrogen (MH) actuator for driving a rehabilitative system using environmentally friendly hydrogen. The temperature–pressure characteristics of the MH actuator according to the temperature control of the Peltier element were analyzed to apply to the driving of the rehabilitative system to assist the daily activities of the patient. In this experiment, Peltier element is used to control the temperature of MH module which contains hydrogen storage alloy with on/off control scheme and fan on/off. To improve the thermal conductivity of the hydrogen-absorbing alloy, an assembly of MH module based on copper has been used. The control currents of the thermoelectric elements were 1 A and 2 A, and the temperature control range was between 35° and 70°. As the result of experiments, it is proper to act fan only while cooling duration and there exist a proper cooling current to drop temperature rapidly. It takes about 100 s to increase to 70 °C and drop to 35 °C of MH module temperature and about 90 s to increase to 70 °C and drop to 40 °C in ambient temperature 30 °C while fan is on only in cooling duration. The desirable characteristics of MH actuator, which makes it suitable for the uses in medical and rehabilitation applications, have been also studied.
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页码:1763 / 1770
页数:7
相关论文
共 74 条
[1]  
Fujii H(2003)Hydrogen storage properties in nano-structured magnesium- and carbon-related materials Physica B 328 77-80
[2]  
Orimo S(2004)Thermo-electric cooler application in electronic cooling Applied Thermal Engineering 24 2207-2217
[3]  
Chein R(2004)Preparation and characterization of carbonaceous material-based hydrogen absorbing composites Journal of Alloys and Compounds 372 243-250
[4]  
Huang G(2004)Design and development of MH actuator system Sensors Actuators A 113 118-123
[5]  
Dilhaire S(1999)Intrinsic degradation behavior of (V Journal of Alloys and Compounds 293–295 150-155
[6]  
Farid M(1997)Ti IEEE Transactions on Rehabilitation Engineering 5 148-157
[7]  
Nishimiya N(2000)) Advanced Robotics 14 579-595
[8]  
Saito H(2009)Fe Sensors Actuators B: Chemical 136 86-91
[9]  
Matsumoto A(2007) alloy during temperature-induced hydrogen absorption-desorption cycling International Journal of Hydrogen Energy 32 247-255
[10]  
Tsutsumi K(2020)Application of hydrogen absorbing alloys to medical and rehabilitation equipment International Journal of Precision Engineering and Manufacturing-Green Technology 7 743-754