Optimization Design of High Stable Flexspline for Harmonic Drive System

Author(s):  
Jutao Wang ◽  
Chunjie Wang
2021 ◽  
Vol 85 (1) ◽  
pp. 139-151
Author(s):  
Dan Zhao ◽  
Yuming Fu ◽  
Lizhong Xu
Keyword(s):  

2014 ◽  
Vol 22 (7) ◽  
pp. 1842-1850 ◽  
Author(s):  
黑沫 HEI Mo ◽  
范世珣 FAN Shi-xun ◽  
廖洪波 LIAO Hong-bo ◽  
周擎坤 ZHOU Qing-kun ◽  
范大鹏 FAN Da-peng
Keyword(s):  

2013 ◽  
Vol 584 ◽  
pp. 189-193
Author(s):  
Mao Hua Xiao ◽  
Fei Yang ◽  
Zun Mang Ke ◽  
Si Hong Zhu ◽  
Deng Song Xiao

Based on production needs, a main transmission mechanism of underdrive speed press was designed in this paper. The design of the main transmission mechanism is the improvements and alternative of sine institutions slider-crank mechanism made. Underdrive and dual slider mechanism were designed, in order to achieve the presses punching process. The nominal pressure angle and the nominal torque were calculated. A preliminary calculation and design of the crankshaft, bearings, slider of the main drive mechanism. Ensure reliable operation and to provide a basis for the optimization design.


2012 ◽  
Vol 538-541 ◽  
pp. 3066-3069 ◽  
Author(s):  
Ning Ding ◽  
Ding Tong Zhang

To eliminate the disadvantages of the lifting electromagnet, the Rare Earth lifting permanent magnet was designed. The magnetic circuit intelligent optimization design was developed. Moreover, a perfect self-acting driving system has been invented. Industry prototypes were manufactured, and they verified that the developed intelligent optimization model is valid; the drive system is feasibility.


2021 ◽  
Vol 12 (4) ◽  
pp. 221
Author(s):  
Zhun Cheng

Pure electric vehicle (PEV) equipped with a dual-motor coupling drive system can make full use of the high efficiency working range of the motor in order to improve vehicle efficiency. In order to further expand the application range of the system and to improve its practical application, this paper designs and proposes a new dynamic coupling drive system of three axis-double working modes, which is based on the Simpson planetary gear train. The new system adopts two planetary gears (P1 and P2), and the two sun gears of double rows, planetary carrier of P1 and gear ring of P2 are bunded. The power output of the P1 gear ring (mode 1) and P2 planetary carrier (mode 2) is realized by a controlling wet clutch. This paper adopts the linear interpolation method, least square method and 5-fold CV cross validation method to establish the full load speed characteristics and efficiency characteristics models of two motors (13 and 30 kW). This paper proposes an optimization design method based on an improved simulated annealing (I-SA) algorithm for new system parameter matching and working mode switching strategy determination. The results show that the modeling accuracy of the two motors is high, and the mean value of MAPE is 4.337%. The proposed optimization design method achieves the demand goal of PEV effectively. The I-SA algorithm has good effectiveness and fast convergence, the mean efficiency of the optimized PEV is 83.91% under all working conditions, the maximum speed is 142.56 km/h and the power utilization rate of the dual-motor is 100%. This study proposes a new hardware system and a design optimization method on software and provides a direct reference for the research of PEV drive systems by combining hardware with software.


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