Modeling Deformation of Spur Gear

  • Vyacheslav Lyashenko
  • Diana Rudenko
Keywords: Cogwheel, Deformation, Modeling, Transmission, Wheel

Abstract

In The work considers 11 types of gears, features of their design and application. Analysis of gears designs is carried out, since shape of teeth directly affects process of teeth gearing, and this, in turn, affects load, which causes deformation of elements. 3D model of spur gear was created in ANSYS system. The work was limited by analyzing problem from point of view of gear wheels’ deformation, which were made of 40L carbon steel and carbon composite material. As a result, finite element modeling and analysis of gears using ANSYS system was carried out.

Downloads

Download data is not yet available.

Author Biographies

Vyacheslav Lyashenko

Department of Media Systems and Technology, Kharkiv National University of Radio Electronics. Ukraine.

Diana Rudenko

Department of Informatics, Kharkiv National University of Radio Electronics. Ukraine.

This is an open access article, licensed under CC-BY-SA

Creative Commons License
Published
        Views : 168
2021-09-19
    Downloads : 143
How to Cite
[1]
V. Lyashenko and D. Rudenko, “Modeling Deformation of Spur Gear”, International Journal of Recent Technology and Applied Science, vol. 3, no. 2, pp. 81-91, Sep. 2021.
Section
Articles

References

Ya. M. Radkevich, and A. G. Skhirtladze, “Metrologiya, standartizaciya i sertifikaciya”, Izdatel'stvo Yurayt, 2013.

S. P. Radzevich (Ed.), “Advances in Gear Design and Manufacture”, CRC Press, 2019.

V. E. Starzhinskij, S. V. SHil'ko, and E. V. SHalobaev, “Tekhnologiya proizvodstva zubchatyh koles iz termoplastichnyh polimernyh materialov (obzor)”, Polimernye materialy i tekhnologii, vol. 4, no 2, pp. 6-10, 2018.

U. Kissling, U. Stolz, and A. Türich, “Combining gear design with manufacturing process decisions”, In International Conference on Gears (Garching/Munich, Germany), pp. 1532-1544, 2019.

D. Croccolo, M. De Agostinis, G. Olmi, and N. Vincenzi, “A Practical Approach to Gear Design and Lubrication: A Review”, Lubricants, vol. 8, no. 9, pp. 84, 2020, 10.3390/lubricants8090084.

P. Rai, and A. G. Barman, “Design optimization of spur gear using SA and RCGA”, Journal of the Brazilian Society of Mechanical Sciences and Engineering, vol. 40, no. 5, pp. 1-8, 2018, 10.1007/s40430-018-1180-y.

J. Su, Q. Ke, X. Deng, and X. Ren, “Numerical simulation and experimental analysis of temperature field of gear form grinding”, The International Journal of Advanced Manufacturing Technology, vol. 97, no. 5, pp. 2351-2367, 2018.

T. Kuivaniemi, A. Mäntylä, I. Väisänen, A. Korpela, and T. Frondelius, “Dynamic gear wheel simulations using multibody dynamics”, Rakenteiden Mekaniikka, vol. 50, no. 3, pp. 287-291, 2017, 10.23998/rm.64944.

A. Islam, and M. Islam, “Stress on spur gear and simulation for micro hybrid systems by Ansys workbench”, Journal of Mechanical and Energy Engineering, vol. 3, no. 43-1, pp. 25-30, 2019, 10.30464/jmee.2019.3.1.25.

V. Lyashenko, M. A. Ahmad, S. Sotnik, Z. Deineko, and A. Khan, “Defects of communication pipes from plastic in modern civil engineering”, International Journal of Mechanical and Production Engineering Research and Development, vol. 8, no. 1, pp. 253–262, 2018.

M. H. Al-Sherrawi, V. Lyashenko, E. M. Edaan, and S. Sotnik, “Corrosion as a Source of Destruction in Construction”, International Journal of Civil Engineering and Technology, vol. 9, no. 5, pp. 306–314, 2018.

M. H. Ahmad, V. V. Lyashenko, V. A. Lyubchenko, A. Khan, and O. A. Kobylin, “The Methodology of Image Processing in the Study of the Properties of Fiber as a Reinforcing Agent in Polymer Compositions”, International Journal of Advanced Research in Computer Science, vol. 7, no. 1, pp. 15-18, 2016.

A. Khan, S. Joshi, M. Ahmad, and V. Lyashenko, “Some Effect of Chemical Treatment by Ferric Nitrate Salts on the Structure and Morphology of Coir Fibre Composites”, Advances in Materials Physics and Chemistry, vol. 5, pp. 39-45, 2015.

V. Lyashenko, S. Sotnik, and M. A. Ahmad, “Monitoring the Process of Gear Shaft Creating”, International Journal of Engineering Trends and Technology (IJETT), vol. 64, no. 3, pp. 123-125, 2018.

V. V. Mozharovskij, M. V. Moskaleva, and D. S. Kuz'menkov, “Raschet izgibnyh peremeshchenij zub'ev zubchatyh koles iz kompozitov”, Problemy fiziki, matematiki i tekhniki, vol. 4, no. 41, pp. 59-64, 2019.

R. Khanna, and P. K. Sinha, “Structural Analysis of Spur Gear with Composite Material Under Different Loading Conditions”, In Recent Advances in Mechanical Engineering (Springer, Singapore), pp. 599-604, 2021, 10.1007/978-981-15-8704-7_73.

P. G. Catera, D. Mundo, A. Treviso, F. Gagliardi, and A. Visrolia, “On the design and simulation of hybrid metal-composite gears”, Applied Composite Materials, vol. 26, no. 3, pp. 817-833, 2019, 10.1007/s10443-018-9753-6.

S. Mahendran, K. M. Eazhil, and L. S. Kumar, “Design and analysis of composite spur gear”, International Journal of Research and Scientific Innovation, vol. 1, no. 6, pp. 42-53, 2014.