Tang Li, Yao Xiongliang, Wu Guoxun, Tang Dong
College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China.
College of Harbour Coastal and Offshore Engineering, Hohai University, Nanjing 210098, China.
Materials (Basel). 2020 Dec 16;13(24):5748. doi: 10.3390/ma13245748.
The vibration of the periodic oscillator coupled damping beam model is reduced through the band gaps designing method, which can be applied in equivalent engineering structures. In this paper, the flexural wave dispersion relations of the infinite long periodic oscillator coupled damping beam were calculated using the reverberation-ray matrix method combined with the Bloch theorem. The flexural wave vibration frequency response function of the finite long periodic oscillator coupled damping beam was carried out using the finite element method. The flexural wave vibration band gaps occur in the infinite long periodic oscillator coupled damping beam model in both the analytical and numerical results. In these band gaps, flexural waves' propagation is prohibited, and flexural vibration is significantly suppressed. Furthermore, the effects of structure and material parameters on the flexural wave vibration band gaps characteristics are studied. Thus, the structural vibration reduction design can be realized by adjusting the related parameters of the periodic coupled damping beam structures and the equivalent 2D periodic stiffened plate structures.
通过带隙设计方法降低了周期振荡器耦合阻尼梁模型的振动,该方法可应用于等效工程结构。本文采用混响射线矩阵法结合布洛赫定理计算了无限长周期振荡器耦合阻尼梁的弯曲波色散关系。利用有限元方法得到了有限长周期振荡器耦合阻尼梁的弯曲波振动频率响应函数。在无限长周期振荡器耦合阻尼梁模型中,解析结果和数值结果均出现了弯曲波振动带隙。在这些带隙中,弯曲波的传播被禁止,弯曲振动得到显著抑制。此外,研究了结构和材料参数对弯曲波振动带隙特性的影响。因此,通过调整周期耦合阻尼梁结构和等效二维周期加劲板结构的相关参数,可以实现结构减振设计。