Global Design to Gain a Competitive Edge pp 345-354 | Cite as
Loaded Tooth Contact Analysis of Modified Helical Face Gears
Abstract
For improving the meshing performance of helical face gears, the present study adopts a design method of double crowning. By the profile and longitudinal modification in term of parabola type, the drive gains the quasi-conjugated character. The mathematial model of the loaded tooth contact analysis (LTCA) for the helical face gears is established. Simulations for different designs under different working conditions are performed for getting the loaded contact patterns, load distributions and loaded transmission errors. Meshing analysis indicates that the proposed method can effectively avoid the edge contact, optimize the load distribution, decrease the sensitivity to misalignments. The results are illustrated with numerical examples.
Keywords
helical face-gear loaded contact analysis surface modificationPreview
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8. References
- [1]F. L. Litvin, A. Egelja, J. Tan, G. Heath, (1998) Computerized design, generation and simulation of meshing if orthogonal offset face gear drives with a spur involute pinion with localized bearing contact. Mech Mach Theory 33:87–102MATHCrossRefGoogle Scholar
- [2]F. L. Litvin, Y. Zhang, J. C. Wang, R. B. Bossler, Y. J. D. Chen, (1992) Design and geometry of face-gear drives. ASME J Mech Des 114:642–647CrossRefGoogle Scholar
- [3]F. L. Litvin, et al, (2001) Design, generation and TCA of new type of asymmetric face-gear drive with modified geometry. Comput Methods Appl Mech Engrg 190:5837–5865MATHCrossRefMathSciNetGoogle Scholar
- [4]F. L. Litvin, et al, (2002) Face-gear drive with spur involute pinion: Geometry, generation by a worm, stress analysis. Comput Methods Appl Mech Engrg 191:2785–2813MATHCrossRefGoogle Scholar
- [5]F. L. Litvin, (1994) Gear Geometry and Applied Theory. Prentice Hall, Inc., Englewood Cliffs, New JerseyGoogle Scholar
- [6]T. F. Conry and A. Seireg, (1971) A Mathematical Programming Method for Design of Elastic Bodies in Contact. ASME Journal of Engineering for Industry 95B:387–392Google Scholar
- [7]ANSYS Inc, (2000) ANSYS User’s Manual. America ANSYS Inc office, Beijing, P. R. ChinaGoogle Scholar