Multiobjective ease-off optimization of high-speed spiral bevel gear for loaded meshing performance

被引:0
|
作者
Yanming Mu
Xueming He
Zongde Fang
机构
[1] Jiangnan University,Jiangsu Key Laboratory of Advanced Food Manufacturing Equipment and Technology
[2] Jiangnan University,School of Mechanical Engineering
[3] Northwestern Polytechnical University,School of Mechanical Engineering
关键词
High-speed spiral bevel gear; Multiobjective ease-off optimization; Tooth flash temperature; Loaded transmission error; Meshing impact;
D O I
暂无
中图分类号
学科分类号
摘要
To improve the loaded meshing performance (LMP) of high-speed spiral bevel gear transmissions, a multiobjective ease-off optimization design method is proposed. First, an ease-off target surface that meets the functional requirements is established; second, the loaded transmission error (LTE), the relative normal velocity at the initial meshing point, the sliding velocity and the curvature radius of the meshing point on the contact path are obtained by tooth contact analysis (TCA) and loaded tooth contact analysis (LTCA). Then, the meshing impact (MI) is calculated based on the impact theory, and the tooth flash temperature (TFT) is obtained by using the Blok formula. Finally, the mathematical optimal model is created to reduce the LTE, MI and TFT of spiral bevel gear transmissions. The modified tooth surface of the pinion and the corresponding processing parameters are reversed with the genetic algorithm. Simulations on the computer show that the LTE, impact velocity, impact force and TFT of the optimized gear are reduced by 31.66%, 52.55%, 61.15% and 20.35%, respectively, compared with those of the gear before the optimization, and the dynamic load factor (DLF) and tooth surface stresses of the optimized gear are also significantly reduced. The proposed multiobjective ease-off optimization technique can effectively improve the dynamic characteristics and scuffing resistance of spiral bevel gear transmissions.
引用
收藏
相关论文
共 50 条
  • [1] Multiobjective ease-off optimization of high-speed spiral bevel gear for loaded meshing performance
    Mu, Yanming
    He, Xueming
    Fang, Zongde
    JOURNAL OF THE BRAZILIAN SOCIETY OF MECHANICAL SCIENCES AND ENGINEERING, 2021, 43 (08)
  • [2] An innovative ease-off flank modification method based on the dynamic performance for high-speed spiral bevel gear with high-contact-ratio
    Mu, Yanming
    He, Xueming
    Fang, Zongde
    MECHANISM AND MACHINE THEORY, 2021, 162
  • [3] Design and Dynamic Performance Analysis of High-Contact-Ratio Spiral Bevel Gear Based on Ease-off Technology
    Mu, Yan-Ming
    He, Xue-Ming
    Fang, Zong-De
    INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING, 2021, 22 (12) : 1963 - 1973
  • [4] Design and Dynamic Performance Analysis of High-Contact-Ratio Spiral Bevel Gear Based on Ease-off Technology
    Yan-Ming Mu
    Xue-Ming He
    Zong-De Fang
    International Journal of Precision Engineering and Manufacturing, 2021, 22 : 1963 - 1973
  • [5] A direct preset method for solving ease-off tooth surface of spiral bevel gear
    Chen, Peng
    Wang, Sanmin
    Li, Fei
    Zou, Haoran
    MECHANISM AND MACHINE THEORY, 2023, 179
  • [6] High-order contact analysis method of spiral bevel gear tooth surface based on ease-off
    Chen P.
    Wang S.
    Li F.
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2024, 39 (06):
  • [7] Calculation of gear meshing stiffness and loaded tooth contact analysis based on ease-off surface topology
    Wei B.
    Yang J.
    Nie S.
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2019, 34 (12): : 2745 - 2752
  • [8] A novel ease-off flank zoning modification method of spiral bevel gears
    Yan H.
    Xiao M.
    Hu Z.
    Ai W.
    Ming X.
    Yan, Hongzhi (yhzcsu@163.com), 2018, Central South University of Technology (49): : 824 - 830
  • [9] A novel ease-off flank modification methodology for spiral bevel and hypoid gears
    Shih, Yi-Pei
    MECHANISM AND MACHINE THEORY, 2010, 45 (08) : 1108 - 1124
  • [10] Optimization of dynamic meshing behavior of high speed spiral bevel gears
    Fang, Z.D.
    Yang, H.B.
    Zhou, Y.W.
    Deng, X.Z.
    Hangkong Xuebao/Acta Aeronautica et Astronautica Sinica, 2001, 22 (01): : 69 - 72