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Exact free vibration analysis of axially moving viscoelastic plates

机译:轴向运动粘弹性板的精确自由振动分析

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摘要

In this paper, an exact finite strip method is developed for the free vibration analysis of axially moving viscoelastic plates. Using the differential equation that governs the vibration of plates traveling at a constant axial speed, and utilizing the rheological models to model the viscoelastic behavior of materials, the exact stiffness matrix of a finite strip of plate is extracted in the frequency domain. Terms of this matrix are implicit functions of the eigenvalues of free vibration, in-plane forces, viscoelasticity parameters, axial speed and the geometry of the plate. By assembling the stiffness matrices of these finite strips, the global stiffness matrix of a plate moving on intermediate rollers is obtained, from which the eigenvalues defining the free vibration of the plate are extracted within the domain of complex numbers using a suitable algorithm. These values (that represent the exact frequencies of the plate vibration and damping) can be used as a benchmark to evaluate the accuracy of other numerical techniques. Finally, by presenting a set of numerical examples, the effects of axial speed and viscoelastic parameters on the free vibration of moving plates are examined in this paper.
机译:本文针对轴向运动的粘弹性板的自由振动分析,开发了一种精确的有限条法。使用微分方程来控制以恒定轴向速度行进的板的振动,并使用流变模型对材料的粘弹性行为进行建模,从而在频域中提取出有限板的精确刚度矩阵。该矩阵的术语是自由振动,面内力,粘弹性参数,轴向速度和板的几何形状的特征值的隐函数。通过组装这些有限条的刚度矩阵,可以获得在中间辊上移动的板的整体刚度矩阵,使用合适的算法从中提取定义板自由振动的特征值。这些值(代表板振动和阻尼的确切频率)可以用作评估其他数值技术准确性的基准。最后,通过给出一组数值示例,研究了轴向速度和粘弹性参数对移动板自由振动的影响。

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