华南理工大学学报(自然科学版) ›› 2020, Vol. 48 ›› Issue (5): 134-141,148.doi: 10.12141/j.issn.1000-565X.190829

• 机械工程 • 上一篇    下一篇

Ease-Off 修形准双曲面齿轮减振优化设计

蒋进科1 刘钊1 彭先龙2
  

  1. 1 长安大学 汽车学院 汽车运输安全保障技术交通行业重点实验室,陕西 西安 710064;2. 西安科技大学 机械工程学院,陕西 西安 710054
  • 收稿日期:2019-11-12 修回日期:2019-12-23 出版日期:2020-05-25 发布日期:2020-05-01
  • 通信作者: 蒋进科(1982-),男,博士研究生,工程师,主要从事齿轮传动技术研究。 E-mail:jjk06@126.com
  • 作者简介:蒋进科(1982-),男,博士研究生,工程师,主要从事齿轮传动技术研究。
  • 基金资助:
    国家自然科学基金资助项目 (51605378); 陕西省自然科学研究计划项目 (2018JM5089); 中央高校基本科研业务项目 (300102228103)

Optimization Design of Vibration Reduction for Hypoid Gears with Ease-Off Flank Modification 

JIANG Jinke1 LIU Zhao1 PENG Xianlong2   

  1. 1. Key Laboratory of Automotive Transportation Safety Techniques of Ministry of Transport,School of Automotive,Chang' an
    University,Xi'an 710064,Shaanxi,China; 2. College of Mechanical Engineering,Xi'an University of Science and Technology,
    Xi'an 710054,Shaanxi,China
  • Received:2019-11-12 Revised:2019-12-23 Online:2020-05-25 Published:2020-05-01
  • Contact: 蒋进科(1982-),男,博士研究生,工程师,主要从事齿轮传动技术研究。 E-mail:jjk06@126.com
  • About author:蒋进科(1982-),男,博士研究生,工程师,主要从事齿轮传动技术研究。
  • Supported by:
    Supported by the National Natural Science Foundation of China (51605378) and the Natural Science Basic Re-search Plan in Shaanxi Province of China (2018JM5089)

摘要: 为了改善汽车驱动桥动态性能,提出基于 Ease-off 修形准双曲面齿轮齿面减振优化设计方法。该方法通过预置传动误差参数及抛物线修形参数设计小轮法向 Ease-off 曲面,小轮修形齿面表示为与大轮共轭的小轮齿面叠加 Ease-off 曲面。结合齿面接触分析 (TCA)、齿面承载接触分析 (LTCA) 方法获得齿轮啮合刚度。以啮合位置受力分析为基础,应用集中质量法建立准双曲面齿轮弯-扭-轴耦合动力学模型,采用数值方法求解运动微分方程得到系统的振动响应。以法向振动加速度均方根最小为优化目标获得最佳修形齿面,并分析修形导致的刚度波形及幅值变化对系统动态性能的影响。算例表明: 当修形量过大时导致刚度下降较多,引起法向振动增加; 修形齿面的平均啮合刚度相差不大情况下,刚度曲线的形状较幅值对振动的影响更为敏感; 最优 Ease-off 修形后系统振动明显降低,齿轮副的平均啮合刚度下降较少且刚度曲线中主要为啮合频率,基本无倍频成分; 修形齿面承载传动误差幅值 (ALTE) 降低且曲线中的高频成分增加时,未必能减小振动; 多载荷 ALTE 曲线基本可以反映振动随载荷的变化趋势。

关键词: 准双曲面齿轮, Ease-off 修形, 振动, 啮合刚度, 承载传动误差, 承载接触分析

Abstract: An optimization design method of vibration reduction for ease-off modification based hypoid gears was proposed to improve dynamic performances of automobile drive pinion axle. The modified pinion were represented by a sum of two vector functions determining the tooth of conjugate and the pinion normal ease-off deviations ,which were expressed by both predesigned transmission error function and tooth profile modification curves. Mes-hing stiffness was obtained with tooth contact analysis (TCA) and loaded tooth contact analysis (LTCA). Based on force analysis of the meshing position,the bending-torsional-axial coupling dynamic lumped mass model for hy-poid gears was established,and the vibration response of the system was obtained by solving the differential equa-tion of motion with numerical method. The best ease-off deviations were determined by a optimizing minimal mean square value of normal vibration. Besides,influences of stiffness curve shape and amplitude caused by modifica-tion on the dynamic performance of the system were explored. A numerical example shows that excessive modifica-tion leads to decrease of meshing stiffness,which are responsible for the increase of normal vibration. In case of a little differences in value of average meshing stiffness for the modified tooth surfaces,the shape is more sensitive to vibration than the amplitude for stiffness curve. After the optimal ease-off modification,the vibration of system is obviously reduced. Besides,the average meshing stiffness decreases a little and main frequency in the stiffness curve is meshing frequency,and there is no frequency doubling component. When the amplitude of load transmis-sion error (ALTE) decreases and the high frequency component in the curve increases,the vibration may not be reduced,and ALTE can basically reflect the variation tendency of vibration with loads.

Key words: hypoid gear, ease-off modification, vibration, meshing stiffness, loaded transmission error, loaded tooth contact analysis

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