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Flexural vibration band gaps in periodic Timoshenko beams with oscillators in series resting on flexible supports

机译:弯曲振动带隙中的周期TIMOSHONKO梁,振荡器串联依赖于柔性支撑件

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摘要

The propagation properties of waves in Timoshenko beams resting on flexible supports and with periodically attached harmonic locally resonant oscillators are studied by the transfer matrix methodology. Through calculating the differential equations of the beam for the flexible vibration and the dynamic equations of the oscillators in series, the matrix of dynamic stiffness and the resulting transfer matrix are derived. Accordingly, the band gap in infinite system characterized by the propagation constant can be verified by comparing to the curve of transmission property, determined with the finite element method for the finite system. The mechanism of each band gap formation is further explored. Numerical results show that different from the single degree-of-freedom mass-spring model, one more locally resonant band gap is generated in the system of two oscillators in series. The introduction of flexible supports, allowing for variable internal coupling between the adjacent cells, produces an extra band gap with a minimum frequency of zero. It is also found that the starting frequencies of the locally resonant gaps are related to the spring stiffness and mass of the oscillator. Therefore, the positions and widths of the band gaps can be tuned by properly adjusting the four parameters of the oscillators and also the stiffness of the flexible supports.
机译:通过传递矩阵方法研究了依赖于柔性支撑件和周期性谐波局部谐振振荡器的Timoshenko梁中波的传播特性。通过计算用于串联振动的光束的微分方程和串联振荡器的动态方程,导出动态刚度和所得传递矩阵的矩阵。因此,通过与有限系统的有限元方法相比,可以通过比较传输特性的曲线来验证特征在于传播常数的无限系统中的带隙。进一步探索每个带隙地层的机制。数值结果表明,与单一自由度质量弹簧模型不同,在两个振荡器的系统中产生了一个局部谐振带隙。柔性支撑件的引入,允许在相邻的单元之间进行可变内部耦合,产生具有零频率的额外带隙。还发现局部谐振间隙的起始频率与振荡器的弹簧刚度和质量有关。因此,可以通过适当地调节振荡器的四个参数以及柔性支撑件的刚度来调谐带间隙的位置和宽度。

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