Design, Modelling and Analysis of Helical Gear Pair using ANSYS and AGMA Standards for Calculating a Bending and Contact Stress on Gear Profiles
Abstract & Details
Research Area
Mechanical engneering
Keywords
Helical gear pair
AGMA
ANSYS
contact stress
bending stress
bending strength
surface fatigue strength
tooth surface strength of gear
Abstract
Gear failure can be controlled by their tooth surface strength; the bending effects and wear effect are major parameters, affected in any gear system to minimize or reduce the failure. In this paper aims to provide information on the bending and contact stress analysis of helical gear pair with used of two steel materials. Thus, the analysis of stress, bending effects and contact effects to minimize or reduce the failure of gears. Therefore, paper focuses on the theoretical and finite element method to calculate bending and contact (Root and Flank safety) stresses on the tooth geometry of major effected parameters on helical gear pair. Authors have to use the various approaches to calculate the wear and bending effects of gear failure cause in static condition using finite element analysis, AGMA standard and ANSYS. A helical gear has to checked their root and flank safety by calculating their strength to followed by the Lewis’s equation to check by manually, and KISSSOFT SOFTWARE have to calculated strength of any type of gear system. This paper contains theoretical, numerical and analytical methods for the helical gear pair analysis.
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Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | Snehal sanatkumar Jani | Atmiya Intitute Of Technology & Science, Rajkot, India |
| 2 | Jinesh B Shah | Atmiya Intitute Of Technology & Science, Rajkot, India |
| 3 | Jaimin G. Pandya | Atmiya Intitute Of Technology & Science, Rajkot, India |
How to Cite
Use the following formats to cite this article in your research.
APA Style
Jani, Snehal sanatkumar, Shah, Jinesh B, & Pandya, Jaimin G. (2017). Design, Modelling and Analysis of Helical Gear Pair using ANSYS and AGMA Standards for Calculating a Bending and Contact Stress on Gear Profiles. International Journal of Advance Research and Innovative Ideas In Education, 3(2), 3813-3821.
MLA Style
Jani, Snehal sanatkumar, et al. "Design, Modelling and Analysis of Helical Gear Pair using ANSYS and AGMA Standards for Calculating a Bending and Contact Stress on Gear Profiles." International Journal of Advance Research and Innovative Ideas In Education, vol. 3, no. 2, 2017, pp. 3813-3821.
IEEE Style
Snehal sanatkumar Jani, Jinesh B Shah, and Jaimin G. Pandya, "Design, Modelling and Analysis of Helical Gear Pair using ANSYS and AGMA Standards for Calculating a Bending and Contact Stress on Gear Profiles," International Journal of Advance Research and Innovative Ideas In Education, vol. 3, no. 2, pp. 3813-3821, 2017.
Vancouver Style
Jani Snehal sanatkumar, Shah Jinesh B, Pandya Jaimin G.. Design, Modelling and Analysis of Helical Gear Pair using ANSYS and AGMA Standards for Calculating a Bending and Contact Stress on Gear Profiles. International Journal of Advance Research and Innovative Ideas In Education. 2017;3(2):3813-3821.
Harvard Style
Jani, Snehal sanatkumar, Shah, Jinesh B, & Pandya, Jaimin G. (2017) 'Design, Modelling and Analysis of Helical Gear Pair using ANSYS and AGMA Standards for Calculating a Bending and Contact Stress on Gear Profiles', International Journal of Advance Research and Innovative Ideas In Education, 3(2), pp. 3813-3821.
Chicago Style
Jani, Snehal sanatkumar, Jinesh B Shah, and Jaimin G. Pandya. "Design, Modelling and Analysis of Helical Gear Pair using ANSYS and AGMA Standards for Calculating a Bending and Contact Stress on Gear Profiles." International Journal of Advance Research and Innovative Ideas In Education 3, no. 2 (2017): 3813-3821.
Turabian Style
Jani, Snehal sanatkumar, Jinesh B Shah, and Jaimin G. Pandya. "Design, Modelling and Analysis of Helical Gear Pair using ANSYS and AGMA Standards for Calculating a Bending and Contact Stress on Gear Profiles." International Journal of Advance Research and Innovative Ideas In Education 3, no. 2 (2017): 3813-3821.
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