Methods for estimating hysteretic behavior and vibration responses of a timing belt tensioner

An automatic tensioner that consists of a torsional spring and friction damping elements is widely used in belt drive system. The relation of the applied torque versus the imposed angle of tensioner during loading and unloading processes is described as a hysteretic loop. An analytical model is esta...

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Bibliographic Details
Main Authors: Shangbin Long, Zhihong Yin, Xuezhi Zhao, Wen-Bin Shangguan
Format: Article
Language:English
Published: SAGE Publishing 2019-11-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814019890228
Description
Summary:An automatic tensioner that consists of a torsional spring and friction damping elements is widely used in belt drive system. The relation of the applied torque versus the imposed angle of tensioner during loading and unloading processes is described as a hysteretic loop. An analytical model is established for estimating the hysteretic behavior of a tensioner, and measurements for hysteretic loop in quasi-static and dynamic excitation are carried out to validate the analytical model. Taking one engine timing belt drive system as a studying example, the method and the procedure for estimating vibration responses of the nonlinear tensioner are given. An iterative algorithm for predicting the accurate equivalent viscous damping of tensioner is carried out in analyzing a belt drive system. The vibration responses of tensioner are validated by the measurement of timing belt drive system. The developed method presented in this article is useful for predicting the hysteretic behavior of tensioner, vibration responses, and the parameters optimization of a belt drive system.
ISSN:1687-8140