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Parametric instability of belts: theory and experiments

机译:皮带的参数不稳定性:理论与实验

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In this paper, the dynamic stability of a power transmission belt excited by an eccentric pulley is investigated. A theoretical model is developed to predict the belt response: simply supported boundary conditions are considered, neglecting the pulley curvature, and including the effect of the lower belt span. The transverse displacement field is expanded into sine series and the Galerkin method is applied to reduce the partial differential equation (PDE) into a set of ordinary differential equations. In order to forecast the belt response, the elastic characteristics only of the belt must be provided to the theoretical model. An experimental investigation is performed on a belt-pulley system with a pulley eccentricity; a laser displacement transducer is used to measure the transverse displacement. The combination of a direct and a parametric excitation is analyzed in detail. Interesting post-critical nonlinear dynamic behaviors are found: sub-harmonic responses and quasi-periodic motions seem to coexist, depending on the initial conditions. Experiments confirm the numerical results, thus validating the present theoretical model.
机译:本文研究了偏心皮带轮激励的动力传动带的动态稳定性。建立了理论模型来预测皮带响应:考虑了简单支撑的边界条件,忽略了皮带轮曲率,并包括了下部皮带跨度的影响。将横向位移场扩展为正弦序列,并应用Galerkin方法将偏微分方程(PDE)简化为一组常微分方程。为了预测皮带响应,必须将仅皮带的弹性特性提供给理论模型。对带轮偏心的皮带轮系统进行了实验研究;激光位移传感器用于测量横向位移。详细分析了直接和参数激励的组合。发现了有趣的临界后非线性动力学行为:次谐波响应和准周期运动似乎并存,具体取决于初始条件。实验证实了数值结果,从而验证了目前的理论模型。

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