Optimal calculation and experimental study on cutting force of hypoid gear processed by generating method

被引:1
作者
Chuang Jiang
Jing Deng
Xiaozhong Deng
机构
[1] Henan University of Science and Technology,Henan Collaborative Innovation Center of Machinery Equipment Advanced Manufacturing
来源
The International Journal of Advanced Manufacturing Technology | 2021年 / 113卷
关键词
Generating method; Hypoid gear; Cutting area calculation; Cutting force optimization; Experimental verification;
D O I
暂无
中图分类号
学科分类号
摘要
The cutting area and cutting force are important factors that affect the tool life and the machining performance of the machine tool. According to the characteristics and actual working conditions of hypoid gear processed by generating method, a new method for calculating the tangential milling force of multi-cutter teeth is presented. The changing rule of cutting area of the tooth surface is analyzed, the boundaries of the cutting area, such as the meshing line, the intersection line between the tool tip and the face cone of the wheel blank, the intersection line between the tool tip and the end face of wheel blank, are calculated, and the formula for calculating the cutting area is derived. According to the relationship of the motion and position between the cutting tool and workpiece, the dynamic tangential cutting force is calculated. The calculation of constant cutting force is completed based on the optimization of feed velocity, and an example is introduced to calculate the cutting area and cutting force. The experiment of variable tangential cutting force and constant tangential cutting force is completed, and the accuracy of the dynamic cutting force model is verified.
引用
收藏
页码:1615 / 1635
页数:20
相关论文
共 68 条
  • [1] Fan Q(2010)Tooth surface error correction for face-hobbed hypoid gears J Mech Des 132 011004-339
  • [2] Fan Q(2011)Optimization of face cone element for spiral bevel and hypoid gears J Mech Des 133 091002-47
  • [3] Fan Q(2016)Ease-off and application in tooth contact analysis for face-milled and face-hobbed spiral bevel and hypoid gears Mech Mach Sci 34 321-1302
  • [4] Shih YP(2007)Mathematical model for a universal face hobbing hypoid gear generator J Mech Des 129 38-13
  • [5] Fong ZH(2007)Flank modification methodology for face-hobbing hypoid gears-based on ease-off topography J Mech Des 129 1294-2016
  • [6] Lin GC(2018)A novel method for gear tooth contact analysis and experimental validation Mech Mach Theory 126 1-8
  • [7] Shih YP(2017)Tooth surface topology modification and processing parameters calculation for spiral bevel gears, J Aerosp Power 32 2009-1615
  • [8] Fong ZH(2019)Flank modification method of hypoid gears with ease off the topology correction Chin Mech Eng 30 1-17
  • [9] Cao XM(2018)Highly accurate 5-axis flank CNC machining with conical tools Int J Adv Manuf Technol 97 1605-11
  • [10] Deng XZ(2018)Five-axis milling of large spiral bevel gears: toolpath definition, finishing, and shape errors Metals. 8 1-212