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锥面砂轮磨齿机的等粗糙度磨削法 被引量:3

The Equal TSR Grinding Method on Gear Grinding Machines with Conical Wheels
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摘要 提出了采用变速展成原理的锥面砂轮等粗糙度磨齿法,该方法可使齿面理论粗糙值处处相等,与通用的匀速展成磨齿法相比,可显著减小理论粗糙度值或缩短磨齿时间。 The tooth grinding method using nonuniform velocity generation technique and conical wheels is introduced. By using this method, the theoretical surface roughness (TSR) can be made uniform everywhere. Compared with the uniform speed generation method, this one can reduce surface roughness and shorten grinding time remarkably.
机构地区 西安交通大学
出处 《工具技术》 北大核心 1998年第6期13-15,共3页 Tool Engineering
关键词 锥面砂轮磨齿机 展成速度 粗糙度 磨削 齿轮  gear grinding machine with conical wheel generation speed surface roughness
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同被引文献19

  • 1苏宇,何宁,武凯,李亮.基于ANFIS的铝合金铣削加工表面粗糙度预测模型研究[J].中国机械工程,2005,16(6):475-479. 被引量:17
  • 2修世超,李长河,蔡光起.磨削加工表面粗糙度理论模型修正方法[J].东北大学学报(自然科学版),2005,26(8):770-773. 被引量:19
  • 3肖时诚,刘杰华,任昭蓉.高性能插齿刀的设计与试验研究[J].工具技术,2007,41(2):38-41. 被引量:2
  • 4李铬,魏平俊.标准插齿刀与修正插齿刀精度分析[J].机械传动,2007,31(1):66-68. 被引量:2
  • 5Rogelio L H, Steven Y L. Predictive Modeling of Surface Roughness in Grinding[J]. International Journal of Machine Tools&Manufacture, 2003, 43: 755-761.
  • 6Agarwal S, Rao P V. A Probabilistic Approach to Predicting Surface Roughness in Ceramic Grinding[J]. International Journal of Machine Tools&Manufacture, 2005, 45: 609-616.
  • 7Zhou X, Xi F. Modeling and Predicting Surface Roughness of the Grinding Process[J]. International Journal of Machine Tools & Manufacture, 2002, 42(7): 969-977.
  • 8Koshy P, Jian V K, Lai G K. Stochastic Simulation Approach to Modelling Diamond Wheel Topography[J]. International Journal of Machine Tool s & Manufacture, 1997, 37 (6) : 751-761.
  • 9Aurich J C, Braun O, Warnecke G. Development of a Super- abrasive Grinding Wheel with Defined Grain Structure by Using Kinematic Simulation[J]. CIRP Analysis Manufacturing Technology, 2003, 52(1): 275-280.
  • 10Argyris J, Fuentes A, Litivin F L. Computerized Integrated Approach for Design and Stress Analysis of Spiral Bevel Gears [J]. Comput. Methods Appl. Mach. Engr., 2002, 191 : 1057-1095.

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