• CN:11-2187/TH
  • ISSN:0577-6686

›› 2004, Vol. 40 ›› Issue (3): 84-87.

• 论文 • 上一篇    下一篇

扫码分享

工程车辆自动变速器的节能换挡规律研究

龚捷;赵丁选;陈鹰;宫文斌;黄海东   

  1. 浙江大学流体传动及控制国家重点实验室;吉林大学;浙江大学;吉林大学
  • 发布日期:2004-03-15

STUDY ON SHIFT SCHEDULE SAVING ENERGY OF ENGINEERING VEHICULAR AUTOMATIC TRANSMISSION

Gong Jie;Zhao Dingxuan;Chen Ying;Gong Wenbin;Huang Haidong   

  1. Zhejiang University Jilin University
  • Published:2004-03-15

摘要: 为了提高工程车辆的传动效率,从液力变矩器和变速器在车辆传动系统中的作用出发,推导出了利用变速器换挡来控制液力变矩器在高效区工作的变速器升降挡规律公式,并在此基础上得到了工程车辆自动变速器的节能换挡规律。该换挡规律可以将变矩器在变速器最低挡的左端低效区和最高挡的右端低效区除外的所有工况下的效率限定在某一理想的范围内。并在自动变速试验台上进行了台架试验,验证了其正确性。该换挡规律的提出,对提高工程车辆液力机械传动系统的传动效率、节约能源,具有十分重要的理论意义和应用价值。

关键词: 工程车辆, 换挡规律, 节能, 液力机械传动系统, 自动变速器, 机理, 磨齿, 磨削轨迹, 内啮合, 强力珩齿, 三维形貌

Abstract: In order to improve engineering vehicular efficiency, the expression of shift schedule is deduced from the function of torque converter and transmission in vehicular powertrain, and shift schedule saving energy of engineering vehicular automatic transmission is obtained. The shift schedule can maintain torque converter working in the range of a limited idealized value under all the working condition except the left low efficiency range when transmission worked in the lowest shift and the right low efficiency range when transmission worked in the highest shift. The bench-test of automatic shift adopting this shift schedule is done on automatic transmission’s test-bed. The experimental results show the shift schedule is correct. This shift schedule will improve the efficiency of hydrodynamic drive system of the vehicle.

Key words: Automatic transmission, Engineering vehicle, Hydrodynamic drive, Saving energy, Shift schedule, 3D topography, Cutting path, Gear grinding, Gear honing, Internal meshing, Mechanism

中图分类号: