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Analysis of Vertical-Horizontal Coupling Vibration Characteristics of Rolling Mill Rolls Based on Strip Dynamic Deformation Process

机译:基于带钢动态变形过程的轧机轧辊垂直-水平耦合振动特性分析

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Nonlinear dynamic rolling forces in the vertical and horizontal directions are, respectively, established, considering the impact of vertical and horizontal directions vibration of rolls. Then a vertical-horizontal coupling nonlinear vibration dynamic model of rolling mill rolls is proposed, based on the interactions between this dynamic rolling force and mill structure. The amplitude-frequency equations of the main resonance and inner resonance are carried out by using multiple-scale method. The characteristics of amplitude frequency under nonlinear stiffness, damping, and amplitude of the disturbance are obtained by adopting the actual parameters of 1780 rolling mills. Finally, the bifurcation behavior of the system is studied, and it is found that many dynamic behaviors such as period, period-3 motion, and chaos exist in rolling mill, and this behavior could be restrained effectively by choosing proper system parameters.
机译:考虑到轧辊垂直和水平方向振动的影响,分别建立了垂直和水平方向的非线性动态滚动力。然后,基于该动态轧制力与轧机结构之间的相互作用,建立了轧机轧辊的垂直-水平耦合非线性振动动力学模型。主共振和内共振的幅频方程采用多尺度方法进行求解。采用1780轧机的实际参数,得到了非线性刚度,阻尼和扰动振幅下的振幅频率特性。最后,研究了系统的分叉行为,发现轧机中存在许多动态行为,例如周期,周期3运动和混沌,可以通过选择适当的系统参数来有效地抑制这种行为。

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