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Nonstick and Stick-Slip Motion of a Coulomb-Damped Belt Drive System Subjected to Multifrequency Excitations

机译:受多频激励的库仑阻尼皮带驱动系统的不粘和粘滑运动

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In this paper, the rotational vibration of a belt drive system with a dry friction tensioner subjected to multiple harmonic excitations is studied. The work is focused on the impact of the dry friction torque combined with the multiexcitation frequencies on dynamic characteristics of the system. An analytical solution procedure is developed for the first time to predict two kinds of periodic responses of the system, i.e., nonstop and one-stop motion characterized by the nonstick and stick-slip vibration of the tensioner arm in the system, respectively. Utilizing this method, parametric studies are carried out to obtain the frequency response of a prototypical belt drive system subjected to harmonic excitations from both the drving and driven pulleys. It is found that the tensioner Coulomb friction toruqe has a significant impact on the amplitude response of the system-it reduces the vibration amplitudes of the tensioner arm, but for other components in the belt system it can either decrease or increase the amplitudes under different situations. Furthermore, if the excitation frequency from the driving pulley is larger than or equal to that from the driven pulley, the system vibration amplitudes are much larger than those under the opposite condition.
机译:本文研究了带有干式摩擦张紧器的皮带传动系统在多次谐波激励下的旋转振动。这项工作着重于干摩擦转矩与多激励频率相结合对系统动态特性的影响。首次开发了一种解析解决方案程序来预测系统的两种周期性响应,即,以系统中张紧器臂的不粘和粘滑振动为特征的不停运动和一站式运动。使用这种方法,进行了参数研究,以获得原型皮带驱动系统的频率响应,该系统受到来自驱动皮带轮和从动皮带轮的谐波激励。发现张紧器库仑摩擦力矩对系统的振幅响应有显着影响-减小了张紧器臂的振动幅度,但是对于皮带系统中的其他组件,它可以在不同情况下减小或增大幅度。此外,如果驱动皮带轮的激励频率大于或等于从动皮带轮的激励频率,则系统振动幅度将比相反条件下的大。

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