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首页> 外文期刊>Journal of applied mathematics >Nonlinear Torsional Vibration Dynamics Behaviors of Rolling Mill’s Multi-DOF Main Drive System under Parametric Excitation
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Nonlinear Torsional Vibration Dynamics Behaviors of Rolling Mill’s Multi-DOF Main Drive System under Parametric Excitation

机译:参数激励下轧机多自由度主传动系统的非线性扭振动力学行为

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Considering the influence caused by joint angle, nonlinear damping, and nonlinear rigidity, the nonlinear torsional vibration dynamical modeling of the multi-DOF rolling mill’s main drive system is established. To analyze the coupled equations by analytic method, the equations are decoupled by transforming them into principal coordinates. The amplitude-frequency characteristic equations are obtained by multiscale method. Furthermore, numerical example based on the 1780 rolling mill’s main drive system of some Steel Co. is given to illustrate the effects of the resonance on the response of the system. The relationship between amplitude and frequency varies according to the parameters changes of nonlinear stiffness, nonlinear friction damping, torque disturbance, and joint angle. During the rolling process, the limited joint angles range is obtained and the variation rules of the joint angle caused by the nonlinear damping, nonlinear stiffness, and the disturbance torque are gained. The results present that the rolling mill can work more stably with the joint angle at a range from 2° to 8° by controlling the value of parameters. The research results provide a theoretical basis and reference for analyzing torsional vibration of rolling mill’s transmission system caused by joint angle.
机译:考虑关节角度,非线性阻尼和非线性刚度的影响,建立了多自由度轧机主传动系统的非线性扭转振动动力学模型。为了通过解析方法分析耦合方程,通过将方程转换成主坐标来解耦合。通过多尺度方法获得了幅频特性方程。此外,还以一些钢铁公司1780年轧机的主传动系统为例,给出了数值示例,以说明共振对系统响应的影响。振幅和频率之间的关系根据非线性刚度,非线性摩擦阻尼,转矩扰动和关节角度的参数变化而变化。在轧制过程中,获得了有限的节角范围,并得到了由非线性阻尼,非线性刚度和扰动转矩引起的节角变化规律。结果表明,通过控制参数值,轧机可以在2°至8°的接合角范围内更稳定地工作。该研究结果为分析轧机传动系统由于关节角引起的扭转振动提供了理论依据和参考。

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