期刊文献+

机床调整误差对螺旋锥齿轮齿面影响的研究 被引量:5

Research on the Influence of Adjustment Errors of Machine on Tooth Surfaces of Spiral Bevel Gear
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摘要 根据准双曲面大轮成形法加工原理及Denavit-Hartenberg齐次变换矩阵,建立准双曲面大轮凸面的齿面方程,并对齿面进行网格划分,推导出齿面误差的求解模型,最后根据实际加工中大轮的加工参数,仿真研究了各个调整参数扰动时的差曲面图。结果表明:垂直刀位与齿形角对齿面的面锥与小端附近的误差比较敏感;水平刀位与水平轮位对齿面的根锥与大端附近的误差比较敏感;轮坯安装角对齿面的面锥与大端附近的误差比较敏感。 According to the forming processing principle of hypoid gear and the Denavit--Harten- berg homogeneous transformation matrix, the equation of hypoid gear convex surface was established, and the surface's gridding was divided. The solution model of tooth surface errors was proposed. Finally, according to the actual processing parameters, the difference surfaces were simulated when each adjustment parameter was perturbed. The results show that the vertical tool position and the tooth profile angle are quite sensitive to the surface errors of the neighborhood of surface cone and small end. The horizontal tool position and a level wheel position are quite sensitive to the surface errors of the neighborhood of root cone and big end. The wheel blank setting angle is quite sensitive to the surface errors of the neighborhood of surface cone and big end.
出处 《中国机械工程》 EI CAS CSCD 北大核心 2009年第1期11-14,19,共5页 China Mechanical Engineering
基金 国家重点基础研究发展计划资助项目(2005CB724104) 中南大学研究生学位论文创新基金资助项目(1343-77202)
关键词 机床调整误差 成形法 准双曲面齿轮 齿面误差 分析 machine adjustment error forming hypoid gear tooth surface error analysis
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参考文献6

  • 1Litvin F L, Wang A G, Handschuh R F. Computerized Generation and Simulation of Meshing and Contact of Spiral Bevel Gears with Improved Geometry[J]. Computer Methods in Applied Mechanics and Engineering, 1998, 158:85-64.
  • 2Zhang Y, Litvin F L. Computerized Analysis of Meshing and Contact of Gear Real Tooth Surfaces [J]. ASME Journal of Mechanical Design, 1994, 116:677-682.
  • 3李兆文,王勇,陈正洪.螺旋锥齿轮技术的研究现状[J].工具技术,2007,41(10):3-6. 被引量:19
  • 4Wang X C, Ghosh S K. Advanced Theories of Hypoid Gears[M]. Amsterdam.. Elsevier Science B V, 1994.
  • 5王小椿,王军,姜虹,李润方,冯文军.螺旋锥齿轮的齿面测量及机床加工参数修正[J].机械工程学报,2003,39(8):125-128. 被引量:32
  • 6American Gear Manufacturers Association. ANSI/AGMA 2009 -- B01 Bevel Gear Classification, Tolerances and Measuring Methods [S]. Alexandria: American Gear Manufacturers Association, 1996.

二级参考文献24

  • 1吴序堂,王小椿,李锋.曲线齿锥齿轮三阶接触分析法的原理及传动质量评价[J].机械工程学报,1994,30(3):47-54. 被引量:14
  • 2樊奇,让.德福.格里森专家制造系统(GEMS)开创弧齿锥齿轮及双曲面齿轮数字化制造新纪元[J].世界制造技术与装备市场,2005(4):87-93. 被引量:64
  • 3汪中厚,周晓玲.螺旋锥齿轮动力学研究方法及进展[J].中国机械工程,2006,17(11):1203-1208. 被引量:27
  • 4Wang X C, Ghosh S K. Advanced Theories of Hypoid Gears. Amsterdam: Elsevier Science B.V, 1994.
  • 5Litvin F L, Kuan C, Wang J C, et al. Minimization of deviation of gear real tooth surface determined by coordinate measurements. Journal of Mechanical Design. ASME, 1993,115(12): 995-1001.
  • 6Lin C Y, Tsay C B, Fong Z H. Computer-aided manufacturing of spiral bevel and hypoid gears with minimum surface-deviation. Mech. Mach. Theory, 1998, 33(6): 785-803.
  • 7Zhang Y, Litvin F L, Maruyama N, et al. Computerized analysis of meshing and contact of gear real tooth surfaces. ASME Journal of Mechanical Design, 1994,116(3) :677 - 682.
  • 8邓效忠.高重合度弧齿锥齿轮的设计理论及实验研究.西北工业大学,2002.
  • 9田行斌.弧齿锥齿轮啮合质量的计算仿真和控制.西北工业大学,2000.
  • 10Litvin F L, Gutman Y. A Method of Local Synthesis of Gears Grounded on the Connection between the Principal and Geodetic Curvatures of Surfaces. ASME Journal of Mechanical Design, 1981,103:114 - 125.

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