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On Dynamical Behavior of a Friction-Induced Oscillator with 2-DOF on a Speed-Varying Traveling Belt

机译:关于变速行进带上具有二自由度的摩擦诱导振荡器的动力学行为

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摘要

The dynamical behavior of a friction-induced oscillator with 2-DOF on a speed-varying belt is investigated by using the flow switchability theory of discontinuous dynamical systems. The mechanical model consists of two masses and a speed-varying traveling belt. Both of the masses on the traveling belt are connected with three linear springs and three dampers and are harmonically excited. Different domains and boundaries for such system are defined according to the friction discontinuity. Based on the above domains and boundaries, the analytical conditions of the passable motions, stick motions, and grazing motions for the friction-induced oscillator are obtained mathematically. An analytical prediction of periodic motions is performed through the mapping dynamics. With appropriate mapping structure, the simulations of the stick and nonstick motions in the two-degree friction-induced oscillator are illustrated for a better understanding of the motion complexity.
机译:利用不连续动力系统的流动切换性理论,研究了具有二自由度的摩擦诱导振荡器在变速皮带上的动力学行为.机械模型由两个质量块和一个变速的行进带组成。行走带上的两个质量都与三个线性弹簧和三个阻尼器连接,并谐波激励。根据摩擦不连续性定义了这种系统的不同域和边界。基于上述域和边界,从数学上得到了摩擦诱导振子的通过运动、棍子运动和擦拭运动的解析条件。通过映射动力学对周期性运动进行分析预测。通过适当的映射结构,说明了两度摩擦诱导振荡器中粘杆和非粘杆运动的模拟,以便更好地理解运动复杂性。

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