Modal behaviour of spur gear pairs for a low speed transmission application – a comparative study between symmetric and asymmetric gears

被引:0
作者
Gupta K. [1 ]
Chatterjee S. [2 ]
机构
[1] National Institute of Technology, Jirania, Tripura, Agartala
[2] Department of Mechanical Engineering, Cooch Behar Government Engineering College, West Bengal
关键词
deformation; mode shape; natural frequency; spur gear; symmetric and asymmetric gear pair;
D O I
10.1504/IJSPM.2022.10053306
中图分类号
学科分类号
摘要
Modal analyses on the types of involute profile spur gear is investigated in this work using the FEM analysis platform considering the no-load condition. The gear pairs’ resonance frequency behaviours were mapped against the first six mode shapes. A comparison study has also been carried out for the involved types of gear pairs, making it prominent, between symmetric and asymmetric gear pairs. From this analysis, it was noticed that the asymmetric gear pair bears a high range of resonating frequencies in comparison to other symmetric involute gear teeth pairs. Attempts have been made to examine a specific range of higher values of frequencies for asymmetric gear pair than any other asymmetric pairs at different modes by modal analysis. Copyright © 2022 Inderscience Enterprises Ltd.
引用
收藏
页码:304 / 313
页数:9
相关论文
共 28 条
[11]  
Gokhale N.S., Deshpande S.S., Bedekar S.V., Thite A.N., Practical Finite Element Analysis, Finite to Infinite, pp. 49-111, (2008)
[12]  
Gupta K, Chatterjee S., Analysis of design and material selection of a spur gear pair for solar tracking application, Materials Today: Proceedings, 5, 1, pp. 789-795, (2018)
[13]  
Guven F., Effect of design parameters on stresses occurring at the tooth root in a spur gear pressed on a shaft, Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 235, 4, pp. 1164-1174, (2021)
[14]  
Hiung F.Z., Al-Qrimli H.F., Morris K.I., Implementation of XFEM in the study of gear crack propagation behaviour using the SIF on different moments, Int. J. Simulation and Process Modelling, 12, 3–4, pp. 362-368, (2017)
[15]  
Houser D.R., Harianto J., Chandrasekaran B., Josephson J., Iyer N., A multi-variable approach to determine the ‘Best’ gear design, International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, American Society of Mechanical Engineers, 35166, pp. 31-39, (2000)
[16]  
Hu W., Chen Z., A multi-mesh MPM for simulating the meshing process of spur gears, Computers and Structures, 81, 20, pp. 1991-2002, (2003)
[17]  
Kapelevich A., Geometry and design of involute spur gears with asymmetric teeth, Mechanism and Machine Theory, 35, 1, pp. 117-130, (2000)
[18]  
Karpat F., Ekwaro-Osire S., Karpat E., A computer program for dynamic load simulation of spur gears with asymmetric and symmetric teeth, World Journal of Mechanics, 2, 5, pp. 239-245, (2012)
[19]  
Karpat F., Ekwaro-Osire S., Cavdar K., Babalik F. C., Dynamic analysis of involute spur gears with asymmetric teeth, Int. Journal of Mechanical Sciences, 50, 12, pp. 1598-1610, (2008)
[20]  
Maitra G.M., Handbook of Gear Design, (1994)