TY - JOUR
T1 - An automatic and portable prosthetic cooling device with high cooling capacity based on phase change
AU - Han, Yu
AU - Liu, Fan
AU - Zhao, Liang
AU - Zhe, Jiang
N1 - Publisher Copyright:
© 2016 Elsevier Ltd. All rights reserved.
PY - 2016/7/5
Y1 - 2016/7/5
N2 - Lower limb prosthesis wearers usually suffer from excessive heat and resulted perspiration within a prosthetic socket. We present a novel cooling device that can remove excessive heat and maintain a desired skin temperature in a lower-limb prosthesis. To remove excessive metabolic heat, the cooling device used heat pipes to collect heat generated from the residual limb and dissipate heat to an external ice pack. More importantly by using a novel flow channel array, the system thermal resistance was adjustable, and a cooling capacity ranging from 6.6 W to 15.6 W was achieved to cover various wearer activities. We demonstrated the device's capability of removing excessive heat under two simulated walking activity patters (at 2 km/h and 5 km/h); and the skin temperature was maintained constant at 31.4 °C ± 0.2 °C by using corresponding cooling conditions. Finally, we demonstrated that by using an automatic control scheme the system can maintain a constant, desired skin temperature under varying thermal loads. With its compact size, high cooling capacity and flexibility of operation, this device is promising for reducing skin maceration and increasing the quality of life for prosthesis users.
AB - Lower limb prosthesis wearers usually suffer from excessive heat and resulted perspiration within a prosthetic socket. We present a novel cooling device that can remove excessive heat and maintain a desired skin temperature in a lower-limb prosthesis. To remove excessive metabolic heat, the cooling device used heat pipes to collect heat generated from the residual limb and dissipate heat to an external ice pack. More importantly by using a novel flow channel array, the system thermal resistance was adjustable, and a cooling capacity ranging from 6.6 W to 15.6 W was achieved to cover various wearer activities. We demonstrated the device's capability of removing excessive heat under two simulated walking activity patters (at 2 km/h and 5 km/h); and the skin temperature was maintained constant at 31.4 °C ± 0.2 °C by using corresponding cooling conditions. Finally, we demonstrated that by using an automatic control scheme the system can maintain a constant, desired skin temperature under varying thermal loads. With its compact size, high cooling capacity and flexibility of operation, this device is promising for reducing skin maceration and increasing the quality of life for prosthesis users.
KW - Adjustable thermal resistance
KW - Heat pipes
KW - Lower-limb prosthesis
KW - Phase change materials
KW - Prosthesis cooling
KW - Thermal management
UR - https://www.scopus.com/pages/publications/84970967281
U2 - 10.1016/j.applthermaleng.2016.05.074
DO - 10.1016/j.applthermaleng.2016.05.074
M3 - 文章
AN - SCOPUS:84970967281
SN - 1359-4311
VL - 104
SP - 243
EP - 248
JO - Applied Thermal Engineering
JF - Applied Thermal Engineering
ER -