吉林大学学报(工学版) ›› 2013, Vol. 43 ›› Issue (02): 334-339.

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Milling simulation analysis of spiral bevel gear based on tooth generating line

HONG Zhao-bin, YANG Zhao-jun, ZHANG Xue-cheng, WANG Bai-chao   

  1. College of Mechanical Science and Engineering, Jilin University, Changchun 130022, China
  • Received:2012-03-19 Online:2013-03-01 Published:2013-03-01

Abstract: Based on the generating principle of the tooth surface of spiral bevel gear with spherical involute,the formation theory of generating line of tooth surface was studied. A method was proposed to machine this kind of gear tooth surface with the generating line as the milling cutter edge and using 3-axis linkage. A 3-D model was built for the bevel gear machine tool, the simulation of bevel gear machining process was performed and the tooth surface contact trace of the bevel gear generated by simulation was analyzed. The results indicated that the milling process of the spiral bevel gear based on the proposed theory is characterized by a simple motion and an easy control, and being able to realize the line-contact transmission with large dip-angle.

Key words: mechanical manufacturing technique and equipment, spherical involute, spiral bevel gear, 3-axis linkage, machining simulation

CLC Number: 

  • TH132.41
[1] Fan Q. Computerized modeling and simulation of spiral bevel and hypoid gears manufactured by gleason face hobbing process[J]. ASME J Mech Des, 2006, 128(6): 1315-1327.

[2] Sentoku H. Load distribution and tooth root stress of bevel gears[J]. JSME International Journal Series C, 1999, 42(2): 404-409.

[3] Simon V V. Machine-tool settings to reduce the sensitivity of spiral bevel gears to tooth errors and misalignments[J]. ASME J Mech Des, 2008, 130(8): 1-10.

[4] 王裕清, 武良臣. 弧齿锥齿轮接触区理论与切削过程仿真[M]. 北京: 煤炭工业出版社, 2004.

[5] Simon V V. Design and manufacture of spiral bevel gears with reduced transmission errors[J]. ASME J Mech Des, 2009, 131(4): 1-11.

[6] Shih Y P. A novel ease-off flank modification methodology for spiral bevel and hypoid gears[J]. Mech Mach Theory, 2010, 45(8): 1108-1124.

[7] Alves J T, Guingand M, De vaujany J P. Set of functions for the calculation of bending displacements for spiral bevel gear teeth[J]. Mech Mach Theory, 2010, 45(2): 349-363.

[8] Tsai Y C, Hsu W Y. The study on the design of spiral bevel gear sets with circular-arc contact paths and tooth profiles[J]. Mech Mach Theory, 2008, 43(9): 1158-1174.

[9] Simon V. Head-cutter for optimal tooth modifications in spiral bevel gears bevel gear teeth[J]. Mech Mach Theory, 2009, 44(7): 1420-1435.

[10] Simon V V. Advanced manufacture of spiral bevel gears on CNC hypoid generating machine[J]. ASME J Mech Des, 2010, 132(3): 1-8.

[11] 张学成,呼咏,杨兆军. 基于齿面发生线的弧齿锥齿轮切齿运动分析[J]. 北京工业大学学报,2010,36(11):1441-1446. Zhang Xue-cheng, Hu Yong, Yang Zhao-jun. Cutting movement analysis of spiral bevel gear based on the tooth generating line[J]. Beijing University of Technology, 2010, 36(11): 1441-1446.

[12] 彭福华. 渐开线齿轮产形线切齿法[M]. 长春:吉林科学技术出版社,2008.
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