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A semi-analytical method and the circumferential dominant modal control of circular cylindrical shells with active constrained layer damping treatment

机译:主动约束层阻尼处理的圆柱壳半解析法和周向主导模态控制

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摘要

To enhance the generality and flexibility of active constrained layer damped (ACLD) forms used in vibration control for circular cylindrical shells, the piezoelectric layer of the ACLD form is divided into several sub-blocks by thin insulated layers, and the sub-blocks are integrated on the viscoelastic layer continuously in the circumferential direction. In addition, on the basis of the authors' recent research on passive constrained layer damped (PCLD) circular cylindrical shells, the piezoelectric effects of the constrained layer (made of piezoelectric material) are further considered. Then, the integrated first-order differential equation for such an ACLD (partially treated in the axial direction) circular cylindrical shell is derived by reformulating the integrated first-order differential equation for the PCLD circular cylindrical shell. Next, employing the extended homogeneous capacity precision integration approach and the superposition principle, a high precision semi-analytical method is developed for solving the dynamic problem for such ACLD circular cylindrical shells. Subsequently, several kinds of circumferential modal control strategy are compared by the method presented. Furthermore, the concept of a circumferential dominant modal control strategy is proposed, which is different from the traditional modal control method. The numerical results show that, on applying the circumferential dominant modal control strategy, the ACLD cylindrical shell attenuates the vibration better. Lastly, some influence factors for the circumferential dominant modal control strategy affecting the damping effect of ACLD circular cylindrical shells are also investigated.
机译:为了增强用于圆柱壳振动控制的主动约束层阻尼(ACLD)形式的通用性和灵活性,ACLD形式的压电层被薄绝缘层划分为几个子块,并且将这些子块集成在一起沿周向连续地在粘弹性层上形成“弹性体”。此外,在作者最近对被动约束层阻尼(PCLD)圆柱壳的研究的基础上,进一步考虑了约束层(由压电材料制成)的压电效应。然后,通过重新格式化PCLD圆柱壳的积分一阶微分方程,导出用于这种ACLD(在轴向上部分处理)的圆柱壳的积分一阶微分方程。接下来,采用扩展的均质容量精确积分方法和叠加原理,开发了一种高精度的半解析方法来解决此类ACLD圆柱壳的动力学问题。随后,通过所提出的方法比较了几种圆周模态控制策略。此外,提出了一种周向主导模态控制策略的概念,它不同于传统的模态控制方法。数值结果表明,采用周向主导模态控制策略,ACLD圆柱壳可以更好地衰减振动。最后,研究了影响ACLD圆柱壳阻尼效果的圆周主导模态控制策略的一些影响因素。

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