• CN:11-2187/TH
  • ISSN:0577-6686

›› 2013, Vol. 49 ›› Issue (5): 47-54.

• 论文 • 上一篇    下一篇

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偏心-高阶椭圆锥齿轮副的强度计算方法

林超;聂玲;李莎莎;张雷   

  1. 重庆大学机械传动国家重点实验室
  • 发布日期:2013-03-05

Strength Calculation Method of Eccentric-high Order Elliptical Bevel Gear Pair

LIN Chao;NIE Ling;LI Shasha;ZHANG Lei   

  1. The State Key Laboratory of Mechanical Transmission, Chongqing University
  • Published:2013-03-05

摘要: 结合微分几何及空间齿轮啮合原理,将偏心-高阶椭圆锥齿轮副的空间节曲线在曲率半径相等的条件下展开到平面上,推导出齿轮副当量节曲线的计算公式,获得啮合传动过程中的压力角。对轮齿进行受力分析,建立偏心-高阶椭圆锥齿轮副的强度计算方法,获得轮齿接触应力及弯曲应力随主动轮转角的变化规律,确定啮合过程中最薄弱轮齿的位置。分析偏心-高阶椭圆锥齿轮副主动轮偏心率、模数、主动轮齿数及从动轮阶数等结构参数对轮齿强度的影响。建立偏心-高阶椭圆锥齿轮副有限元分析模型,利用五轴数控机床加工出齿轮副实体并搭建传动试验平台,通过有限元分析与传动试验,验证该齿轮副强度计算方法的正确性。

关键词: 非圆锥齿轮, 接触应力, 轮齿强度, 椭圆锥齿轮, 弯曲应力

Abstract: Combined with differential geometry and spatial gear meshing theories, the spatial pitch curves of eccentric-high order elliptical bevel gear pair are flattened onto a plane in condition of equal radius of curvature and the calculation formulas of equivalent pitch curves are derived, the press angle in the transmission process is acquired. The force analysis of tooth is performed and a method to calculate the strength of eccentric-high order elliptical bevel gear pair is established, then the variation regulation of contact and bending stresses that change with rotation angle of driving gear is acquired. The position of the weakest tooth in the meshing process is determined and the effect of structure parameters on tooth strength is analyzed, including driving gear’s eccentricity ratio, module, number of driving gear teeth and order of driven gear. The finite element analysis model of eccentric-high order elliptical bevel gear is established and the solid model is manufactured with five-axis numerical controlled machine, then the experimental transmission platform is constructed, so the strength calculation method is verified through finite element analysis and transmission experiment.

Key words: Bending stress, Contact stress, Elliptical bevel gear, Non-circular bevel gear, Tooth strength

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