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Method for estimating vibration responses of belt drive systems with a nonlinear tensioner

机译:用非线性张紧器估计带驱动系统的振动响应的方法

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A friction-type tensioner is widely used in a belt drive system for maintaining belt tension constantly and reducing vibration. Owing to friction dampings, the curve of the reaction torque and the imposed angle of tensioner arm is a hysteretic loop. Here, the hysteretic behavior of tensioner is considered in dynamic analysis of a belt drive system. A hysteretic model for describing the applied torque versus the imposed angle of tensioner arm is established. And an iterative algorithm is proposed for estimating the nonlinear equivalent viscous damping of tensioner under a varying excitation frequency. A timing belt drive system is taken as an example. Based on the existing research, the dynamic models for a belt, an automatic tensioner and rotational pulleys of system are also given. The vibration responses of a belt system, such as the oscillation angle of tensioner arm, the transmission error between pulleys and the hub load applied on pulley, are calculated and compared with the measurements, which are validated the presented method. The influence of damping ratio of tensioner on dynamic responses of system is investigated, and the influence of iteration parameters on the iterative efficiency is discussed. The presented method is beneficial to modifying the existing method for calculating the vibration responses of a belt drive system.
机译:摩擦型张紧器广泛用于皮带驱动系统,用于保持皮带张力和减小振动。由于摩擦阻尼,反应扭矩的曲线和张紧器臂的施加角度是滞后环。这里,在皮带驱动系统的动态分析中考虑张紧器的滞回行为。建立了一种用于描述施加扭矩与施加臂施加角度的滞后模型。并且提出了一种迭代算法,用于在不同的激发频率下估计张紧器的非线性等效粘性阻尼。作为示例采用定时带驱动系统。基于现有研究,还给出了皮带的动态模型,自动张紧器和系统的旋转滑轮。诸如张紧器臂的振荡角的皮带系统的振动响应,与滑轮上施加的滑轮之间的透射误差和旋转误差,与测量相比,验证了所提出的方法。研究了张紧器阻尼比对系统动态响应的影响,讨论了迭代参数对迭代效率的影响。该方法有利于修改用于计算皮带驱动系统的振动响应的现有方法。

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