首页> 外文期刊>Journal of intelligent material systems and structures >A low-cost and efficient d33-mode piezoelectric tuned mass damper with simultaneously optimized electrical and mechanical tuning
【24h】

A low-cost and efficient d33-mode piezoelectric tuned mass damper with simultaneously optimized electrical and mechanical tuning

机译:一种低成本高效的D33模式压电调谐调谐质量阻尼器,同时优化电气和机械调谐

获取原文
获取原文并翻译 | 示例

摘要

This paper proposes a low-cost and efficient piezoelectric tuned mass damper (Piezo-TMD) for structural vibration reduction and energy harvesting. The Piezo-TMD consists of not only a proof mass, piezoelectric materials deforming in the d33 mode, and an electrical resistance, but also a spring and an inductor which enable the mechanical frequency and electrical frequency of the Piezo-TMD to be tuned to the structural resonance frequency. The equations of motion of a structure with the Piezo-TMD are derived, and an optimal design procedure for the Piezo-TMD is proposed to achieve a simultaneous maximum vibration reduction and energy harvesting. The performance of the Piezo-TMD is compared with that of a conventional optimal TMD installed in a footbridge under a pedestrian loading. The simulation results show that the Piezo-TMD performs better than the optimal conventional TMD in terms of vibration reduction while efficiently converting the absorbed mechanical energy to electricity with a high energy harvesting ratio. The innovative development of simultaneously tuning the mechanical and electrical systems leads to a much lower number of PZT stacks (saving 88% of piezoelectric materials in an illustrated case). The parametric study shows that the Piezo-TMD achieves the best performance when the optimal values for the spring stiffness, resistance, inductance, and the number of piezoelectric stacks are adopted from the proposed optimal design. If the selected spring stiffness and inductance are uncertain in a range between 0.94-1.07 times the optimal values, the vibration reduction performance of the Piezo-TMD remains similar, and the energy harvesting performance reduces less than 5%, as compared to the optimal performance. The effect of the number of piezoelectric stacks was also investigated. An insufficient number of piezoelectric stacks reduces the Piezo-TMD performance, and an excessive stack number does not improve the Piezo-TMD performance but increases the Piezo-TMD cost. Finally, the proposed Piezo-TMD employs inductance to significantly reduce the PZT stack number, thereby significantly reducing the cost of Piezo-TMDs.
机译:本文提出了一种低成本高效的压电调谐质量阻尼器(PieZo-TMD),用于结构减振和能量收集。压电TMD不仅包括在D33模式下变形的验证质量,压电材料,以及电阻,还包括弹簧和电感,这使得压电TMD的机械频率和电频率能够调谐到结构谐振频率。推导了具有压电TMD的结构的运动方程,并且提出了压电TMD的最佳设计过程,以实现同时最大减振和能量收集。将压电TMD的性能与在行人负载下安装在行人桥中的传统最佳TMD的性能进行了比较。仿真结果表明,压电TMD在减振方面比最佳传统TMD更好地执行,同时有效地将吸收的机械能与高能量收集比率转换为电力。同时调整机械和电气系统的创新开发导致PZT堆叠的数量远远低得多(在图示的情况下节省了88%的压电材料)。参数研究表明,当采用所提出的最佳设计时,压电TMD在采用的弹簧刚度,电阻,电感和压电堆的数量的最佳值时实现了最佳性能。如果选择的弹簧刚度和电感在最佳值的0.94-1.07倍之间的范围内,则压电TMD的减振性能保持相似,与最佳性能相比,能量收集性能降低小于5% 。还研究了压电堆的数量的效果。压电堆栈数量不足降低了压电TMD性能,并且过度堆叠数量不会提高压电TMD性能,而是提高压电TMD成本。最后,所提出的压电TMD采用电感来显着降低PZT堆栈数,从而显着降低压电TMD的成本。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号