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首页> 外文期刊>International Journal of Mechanical Sciences >Hydroelastic dynamic analysis of axially moving plates in continuous hot-dip galvanizing process
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Hydroelastic dynamic analysis of axially moving plates in continuous hot-dip galvanizing process

机译:连续热镀锌过程中轴向移动板的水弹性动力学分析

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摘要

For the purpose of understanding the vibrational characteristics of moving plates in continuous hot-dip galvanizing process, the linear and nonlinear free vibrations of an axially moving rectangular plate coupled with dense fluid having a free surface are investigated. The fluid is assumed to be incompressible, inviscid and irrotational in this study. Effect of free surface waves of the fluid is taken into account in the analysis. The classical thin plate theory is adopted to formulate the equation of motion of the vibrating plate. The velocity potential and Bernoulli's equation are used to describe the fluid pressure acting on the moving plate. The effect of fluid on the vibrations of the plate may be equivalent to added mass of the plate. The system is solved by applying directly the method of multiple scales to the governing partial-differential equations and boundary conditions. Results show the immersion depth, moving speed, fluid-plate density ratio, stiffness ratio and aspect ratio all have significant effects on the natural frequencies of the immersed moving plate. The nonlinear frequencies of the plate-fluid system are influenced by initial amplitude, moving speed and nonlinear coefficient. It is also shown that the 1:1 and 1:3 internal resonances of the immersed moving plate can occur at certain speeds. Owing to the internal resonance, amplitude ratio of the two internal resonance modes shows multi-value characteristics. With the increase of nonlinear coefficient, the internal resonance phenomenon becomes more and more intense. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了理解连续热浸镀锌过程中活动板的振动特性,研究了轴向活动矩形板与具有自由表面的致密流体耦合的线性和非线性自由振动。在这项研究中,假定流体不可压缩,无粘性且无旋流。分析中考虑了流体自由表面波的影响。采用经典的薄板理论来公式化振动板的运动方程。速度势和伯努利方程用于描述作用在移动板上的流体压力。流体对板的振动的影响可以等同于板的附加质量。通过将多尺度方法直接应用于支配的偏微分方程和边界条件来求解该系统。结果表明,沉浸深度,移动速度,流体板密度比,刚度比和长宽比均对沉浸移动板的固有频率有显着影响。板液系统的非线性频率受初始振幅,移动速度和非线性系数的影响。还表明,浸入式移动板的1:1和1:3内部共振可能在特定速度下发生。由于内部共振,两个内部共振模式的振幅比显示出多值特性。随着非线性系数的增加,内部共振现象变得越来越强烈。 (C)2016 Elsevier Ltd.保留所有权利。

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