Tooth Profile Design for Translational Meshing Motor

Article Preview

Abstract:

As the reason for large transmission ratio, small center distance and interference on translational motor body, the design method of involute gear for translational meshing motor was proposed. In order to get appropriate tooth profile parameters, the trail calculation considering the conditions of interference and coincidence degree were applied using the tooth profile parameters calculated from given module, number of teeth, pressure angle and modification coefficient. The internal meshing gears was designed and processed based on proposed method. The novel translational meshing motor using designed involute gears operates successfully and efficiently which testify the validity and feasibility of proposed method.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

14-18

Citation:

Online since:

August 2013

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Q. Xu, Q.Z. Liao, S.M. Wei, Construction principle and torque solution of the translational meshing motor, IEEE International Conference on Mechatronics and Automation, August 5-7, 2007, Harbin, China (2007) 2894-2899.

DOI: 10.1109/icma.2007.4304019

Google Scholar

[2] R.H. Li, S.M. Wei, Q.Z. Liao, Design and static torque analysis of a radial driving meshing motor, Chin. High Tech. Letts. 21 (2011) 297-302.

Google Scholar

[3] Q. Xu, Q.Z. Liao, S.M. Wei, An improved magnetic equivalent circuit method for predicting static torque of a translational meshing motor, J. Beijing Univ. Chem. Technol. 35 (2008) 76-81.

Google Scholar

[4] Q. Xu, Q.Z. Liao, S.M. Wei, Nonlinear model of translational meshing motor based on magnetic equivalent circuit method, Electric Machines and Control. 12 (2008) 126-131.

Google Scholar

[5] R.H. Li, S.M. Wei, Q.Z. Liao, Dynamic analysis and torque control of translational meshing motor integrated with compliant mechanism, Electric Mach and Control. 13 (2009) 408-413.

Google Scholar

[6] R.H. Li, S.M. Wei, Q.Z. Liao, Modeling and control study for radial driving meshing motor, Electric Machines and Control. 14(2010)14-19.

Google Scholar

[7] Z.Q. Zhao, C.L. Zhang, A.M. Cheng. Profile overlap interference constraint conditions of internal parallel move gears transmission, Trans. Beijing. Institute Technology. 28 (2008)856-859.

Google Scholar

[8] Z.Q. Zhao, C.L. Zhang, A.M. Cheng, Element sand realization of internal parallel move gears transmission of power difference, Water Conservancy & Electric Power Mach. 29 (2007) 22-25.

Google Scholar

[9] C. Feng, Planetary Gear Drive with Small Tooth Number Difference, People's Education Press, Beijing, (1981).

Google Scholar

[10] H. Sun, Z. M Chen, W. J Ge, Theory of Machines and Mechanisms, Higher Education Press, Beijing, (2006).

Google Scholar