Elliptical Gear Dynamic Analysis Based on ANSYS Workbench

Jian Zhang, Peng Rao, Bin Zheng, Xuemei Qi

2018

Abstract

Aiming at the problem of 3D parametric modeling and dynamic analysis of elliptical gears, an elliptical gear was taken as the object of study, and the three - dimensional parametric modeling of elliptical gear was realized by combining MATLAB parametric design and Pro/E entity. Through the modal, harmonic response and transient dynamics analysis of the elliptical gear by using ANSYS, the first six natural frequencies of the elliptical gears and the distribution modes of the main modes and corresponding displacement response curves, strain cloud maps and stress response curves were obtained. The results of dynamic analysis show that the elliptical gear stress and deformation are more serious suffered in the direction of long diameter, keyway direction and keyway, so it should be considered in the design and optimization of elliptical gear

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Paper Citation


in Harvard Style

Zhang J., Rao P., Zheng B. and Qi X. (2018). Elliptical Gear Dynamic Analysis Based on ANSYS Workbench.In Proceedings of the 2nd International Conference on Intelligent Manufacturing and Materials - Volume 1: ICIMM, ISBN 978-989-758-345-2, pages 25-29. DOI: 10.5220/0007525600250029


in Bibtex Style

@conference{icimm18,
author={Jian Zhang and Peng Rao and Bin Zheng and Xuemei Qi},
title={Elliptical Gear Dynamic Analysis Based on ANSYS Workbench},
booktitle={Proceedings of the 2nd International Conference on Intelligent Manufacturing and Materials - Volume 1: ICIMM,},
year={2018},
pages={25-29},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0007525600250029},
isbn={978-989-758-345-2},
}


in EndNote Style

TY - CONF

JO - Proceedings of the 2nd International Conference on Intelligent Manufacturing and Materials - Volume 1: ICIMM,
TI - Elliptical Gear Dynamic Analysis Based on ANSYS Workbench
SN - 978-989-758-345-2
AU - Zhang J.
AU - Rao P.
AU - Zheng B.
AU - Qi X.
PY - 2018
SP - 25
EP - 29
DO - 10.5220/0007525600250029