• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报

• 机构学及机器人 • 上一篇    下一篇

弧齿锥齿轮双重螺旋法切齿原理及齿面接触分析研究

张宇1, 2  严宏志1, 2  曾韬1, 2, 3   

  1. 1. 中南大学高性能复杂制造国家重点实验室  长沙  410012;
    2. 中南大学机电工程学院  长沙  410012;
    3. 长沙哈量凯帅精密机械有限公司  长沙  410100
  • 收稿日期:2014-11-29 修回日期:2015-09-03 出版日期:2015-11-05 发布日期:2015-11-05
  • 通讯作者: 严宏志,男,1964年出生,博士,教授,博士研究生导师。主要研究方向为复杂曲面数字制造理论与技术。 E-mail:yhzcsu@csu.edu.cn
  • 作者简介:张宇,男,1984年出生,博士研究生。主要研究方向为复杂传动件的数字化设计与制造。 E-mail:zhyu116@163.com
  • 基金资助:
    国家重点基础研究发展计划(973计划, 2011CB706800-G)、国家自然科学基金(51375159)和高等学校博士学科点专项科研基金 (20120162110004)资助项目

 
Cutting Principle and Tooth Contact Analysis of Spiral Bevel and Hypoid Gears Generated by Duplex Helical Method

ZHANG Yu1, 2  YAN Hongzhi1, 2  ZENG Tao1, 2, 3   

  1. 1. State Key Laboratory of High Performance Complex Manufacturing, Central South University, Changsha 410012; 2. College of Mechanical and Electrical Engineering, Central South University, Changsha 410012; 3. Changsha Haliang Kaishuai Precision Machinery Co. , Ltd., Changsha 410100
  • Received:2014-11-29 Revised:2015-09-03 Online:2015-11-05 Published:2015-11-05

摘要: 弧齿锥齿轮双重螺旋法具有高效、可实现干切削的特点,是Gleason制弧齿锥齿轮的先进加工方法。为揭示双重螺旋法的切齿原理,以大轮成形法加工的弧齿锥齿轮双重螺旋法为研究对象,以啮合原理和微分几何学为基础,根据刀盘、机床、工件之间的运动位置关系,利用矢量法、基于齿面3个参考点建立切齿数学模型,推导机床调整参数的计算过程;然后,以齿槽中点作为参考点,修正弧齿锥齿轮副的齿坯几何参数;另外,以小轮产形面方程代替其共轭齿面方程,提出新的齿面失配设计新方法,与传统方法相比简化计算过程。以一对7×43的准双曲面齿轮副为例进行设计计算和切齿加工,齿面接触分析与滚动检查结果验证所提出的双重螺旋法切齿原理的正确性,并根据该切齿原理开发弧齿锥齿轮双重螺旋法的设计软件,为该方法在国内的推广提供理论基础与技术支撑。

关键词: 齿面接触分析, 弧齿锥齿轮, 机床调整参数, 切齿原理, 双重螺旋法

Abstract:

The duplex helical method is an advanced manufacturing method of face milling spiral bevel and hypoid gears for its characteristics of higher machining efficiency and power dry cutting. In order to reveal the generalized theory of the duplex helical method, the cutting mathematical model on three reference points is established and the basic machine settings of the formate spiral bevel and hypoid gears generated by the duplex helical method are determined with the vector method according to principle of gearing and differential geometry and the relative position and motion among head-cutter, machine and workpiece. Then, the hypoid gear dimensions are modified based on the root angle of the pinion obtained by the midpoint of the point width for the pinion as the reference point. In addition, and a novel method for calculating ease-off is presented utilizing the pinion generating surface instead of its conjugate surface, which can gain the same simulation results and greatly simplify the process of calculation compared to the traditional methods. Finally, a hypoid gear drive 7×43, designed and manufactured using the duplex helical method, is performed and validated, the results of the tooth contact analysis and rolling tests show that the proposed theory of the duplex helical method is correct, and new spiral bevel and hypoid gear software has been developed using the new approach, which provides the theoretical basis and technical support for the promotion of the duplex helical method at home.

Key words: cutting principle, machine settings, spiral bevel and hypoid gear, tooth contact analysis, duplex helical method