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Amplitude-frequency characteristics analysis for vertical vibration of hydraulic AGC system under nonlinear action

机译:非线性动作下液压AGC系统垂直振动的幅度频率特性分析

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摘要

Hydraulic automatic gauge control (AGC) system is the core control system to ensure the thickness accuracy of cold-rolled plate, and the reliability of its load roll system is the key to guarantee the rolling process with high precision, high speed, continuity and stability. However, the working mechanism of hydraulic AGC system is complex. And it possesses some features such as high nonlinearity, time variability and strong coupling. The vertical vibration easily happens in its working process. Moreover, the stability of system is seriously affected. Nevertheless, the incentive is difficult to determine. In this paper, the theory and method of nonlinear dynamics were introduced to establish the load vertical vibration (LVV) model of HAGC system under nonlinear action. The model was solved with multi-scale method, and the amplitude-frequency characteristic equation of system was obtained. Moreover, the research object of this article also focused on the nonlinear elastic force, nonlinear damping force and nonlinear excitation force, and deeply explored the effect of nonlinear parameters change on the amplitude-frequency characteristics of LVV system. The mechanism and incentive for LVV of hydraulic AGC system were further revealed. The research results lay a theoretical foundation for the vibration inducement and suppression of hydraulic AGC system.
机译:液压自动规格控制(AGC)系统是核心控制系统,以确保冷轧板的厚度精度,其负载辊系统的可靠性是保证轧制过程具有高精度,高速,连续性和稳定性的关键。然而,液压AGC系统的工作机理是复杂的。它具有一些特征,如高的非线性,时间变异性和强耦合。垂直振动在其工作过程中容易发生。此外,系统的稳定性严重影响。然而,难以确定激励。本文介绍了非线性动力学的理论和方法,在非线性作用下建立了HAGC系统的负载垂直振动(LVV)模型。用多尺度方法解决了模型,获得了系统的幅度频率特性方程。此外,本文的研究目的还集中于非线性弹力,非线性阻尼力和非线性激励力,并深入探索了非线性参数变化对LVV系统振幅频率特性的影响。进一步揭示了液压AGC系统LVV的机制和激励。研究结果为液压AGC系统的振动诱导和抑制奠定了理论基础。

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