The Steady-state and Transient Temperature Field of a Magnetorheological Fluid Transmission Device
To obtain the influence of temperature field on characteristic of a magnetorheological transmission device, the thermal analysis model is established and the steady-state and transient temperature field of the transmission device is analyzed by finite element method, the influence rules of corresponding factors on temperature field are discussed. The results indicate that temperature of the magnetorheological transmission device decreases from the inside to the outside and the maximum value appears in the center of the disk; the slip power and convection heat transfer coefficients have a great influence on temperature field of working gap between two disks, however, the flow state of air in non-working gap has little influence on temperature; the greater the slip power of the device, the larger the temperature rise rate between two disks; the slip power is 150W when the device runs continuously in steady state, we can improve the allowable slip power by increasing the convection heat transfer coefficients, decreasing working time or adopting the working mode run— stop— run.
transient steady-state temperature field magnetorheological fluid
Hou You Fu Tian Zu Zhi Wang Nan Nan
College of Mechanical and Electrical Engineering China University of Mining and Technology Xu Zhou City,China,221008
国际会议
长春
英文
149-153
2010-08-24(万方平台首次上网日期,不代表论文的发表时间)