Research on Fast Calculation Method of Temperature Rise for Direct Buried Cable Group

Author(s):  
Yongchun Liang ◽  
Qian Hao ◽  
Chenzhao Fu
2021 ◽  
Vol 104 (2) ◽  
pp. 003685042110245
Author(s):  
Yongming Tang ◽  
Xiangshen He ◽  
Jiawei Cao

Electro-mechanical braking is a new braking mode of rail vehicles, which has the advantages of compact structure, fast response speed, and high precision. It is a new braking technology that conforms to the development trend of full electrification and full intelligence of rail transit brake devices. Due to the special power demand of the electro-mechanical braking device, the electro-mechanical braking motor has a short-time and intermittent working mechanism and is in the state of blocking during working, resulting in its high-temperature rise. Therefore, it is necessary to calculate the temperature rise of the motor quickly and accurately at the beginning of its design. To address this problem, based on the coupling calculation of the equivalent thermal circuit method and the equivalent magnetic circuit method, a fast temperature rise calculation method of the motor is proposed. Then, using the fast calculation method, the temperature rise of the electro-mechanical brake motor under different working periods and wind speed is calculated. By function fitting the calculated results, the motor temperature rise curve fitting function is obtained, which can accurately predict the temperature rise of the motor under different working conditions. It provides a theoretical basis for the use of electro-mechanical braking motor in different working conditions and also provides a reference for the design of the electro-mechanical braking motor.


2013 ◽  
Vol 118 (8) ◽  
pp. 5369-5378 ◽  
Author(s):  
Xiaohua Fang ◽  
Dirk Lummerzheim ◽  
Charles H. Jackman

2021 ◽  
Vol 11 (18) ◽  
pp. 8614
Author(s):  
Jianwei Wu ◽  
Qidi Fu ◽  
Jianrun Zhang ◽  
Beibei Sun

The steering arm has recently been frequently broken in a kind of mining truck with Macpherson suspension. To accelerate replacing the broken parts and minimize the economic cost, a fast calculation method for improving the steering arm is proposed in this paper. In this method, the forces on the steering arm are calculated by quasi-static analysis under a low vehicle velocity. Dynamic characteristics of the tire and road are partly included by considering the ranges of the rolling resistance coefficient and friction coefficient from the empirical values, which determines the torque on the steering arm under extreme conditions. The rigid–flexible coupling model for the left steering mechanism in ANSYS Workbench is established and solved to obtain the distribution stress on the steering arm under extreme conditions. Then, the reliability of the simulation results based on this fast calculation method is verified by the experiment. After determining an improvement scheme considering the economic and time cost, the satisfactory strength is obtained. The results illustrate that the strength of the improved steering arm has nearly doubled. Finally, the effectiveness of the improved steering arm is demonstrated by the users’ feedback after it is manufactured, installed, and used.


2018 ◽  
Vol 38 (4) ◽  
pp. 0415001
Author(s):  
方文辉 Fang Wenhui ◽  
陈熙源 Chen Xiyuan ◽  
柳笛 Liu Di

2018 ◽  
Vol 1087 ◽  
pp. 022027
Author(s):  
Jie Wang ◽  
Dali Ding ◽  
Bo Han ◽  
Cong Li ◽  
Shuo Ku

2008 ◽  
Vol 47 (19) ◽  
pp. D63 ◽  
Author(s):  
Takeshi Yamaguchi ◽  
Tomohiko Fujii ◽  
Hiroshi Yoshikawa

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