首页> 外文会议>Proceedings of the second Asian conference on mechanics of founctional materials and structures. >OPTIMIZATION OF CIRCULAR CYLINDRICAL SHELL PARTIALLY TREATED WITH RING ACTIVE CONSTRAINED LAYER DAMPING
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OPTIMIZATION OF CIRCULAR CYLINDRICAL SHELL PARTIALLY TREATED WITH RING ACTIVE CONSTRAINED LAYER DAMPING

机译:环形主动约束层阻尼部分处理的圆形圆柱壳的优化

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Based on the integrated first order differential equation of circular cylindrical shells treated with partial ACLD proposed by authors recently, and combined with the circumferential dominant modal control strategy, the treatment way of ACLD, the sub-block number of the piezoelectric ring and the control gains are designed in this paper. Firstly, aiming at maximizing damping characteristic of the whole cylindrical shell with minimum additional weight of ACLD to the host shell, the placement and coverage of ACLD are designed by considering the piezoelectric as a whole layer. As followed, pursuing to control as much independent modals of the whole structures as possible, the number of the sub-blocks of the piezoelectric ring and the control gains are determined. Numerical results show that the optimal ACLD cylindrical shell can achieve better damping effect than the one with other parameters to some extent.
机译:基于作者最近提出的采用部分ACLD处理的圆柱壳的积分一阶微分方程,并结合周向主导模态控制策略,ACLD的处理方式,压电环的子块数和控制增益是本文设计的。首先,为了以最小的ACLD对主体壳体的附加重量来最大化整个圆柱形壳体的阻尼特性,通过将压电体作为一个整体来设计ACLD的放置和覆盖。随后,为了控制整个结构的尽可能多的独立模态,确定了压电环的子块的数量和控制增益。数值结果表明,最佳的ACLD圆柱壳在一定程度上要比其他参数的圆柱壳具有更好的阻尼效果。

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