...
首页> 外文期刊>MATEC Web of Conferences >Experimental results for active control of multimodal vibrations by optimally placed piezoelectric actuators
【24h】

Experimental results for active control of multimodal vibrations by optimally placed piezoelectric actuators

机译:通过最佳放置的压电执行器主动控制多模式振动的实验结果

获取原文
           

摘要

Vibration damping is an effective strategy to enhance the life-cycle and performance of mechanical components. In this regard passive control systems involve lower costs and are easier to implement but their bandwidth is limited, whereas active systems provide larger bandwidth and higher adaptability to dynamic loads but higher costs and complexity are required. The recent advances in smart materials promoted the development of smart structures suitable for vibration damping and control. Between them the piezoelectric systems seem to be the most promising, however their efficiency relies on their placement. In a previous work the authors proposed and validated an analytical method to detect the optimal location of piezoelectric plates to control the multi-modal vibrations of a cantilever beam. Recent findings show that, if all actuators are activated simultaneously, the optimization problem can be traced back to the determination of the optimal potential distribution on all the piezoelectric actuators. In this paper the above method is taken into account and applied to a cantilever beam with 13 pairs of surface mounted PZT plates under the excitation provided by an electrodynamic shaker. The experimental damping of two flexural modes combinations has been performed by means of a special-purpose workbench and the assessment of the damping efficiency has been measured by means of a micro I.C.P. accelerometer. The results showed that the multimode vibrations of the cantilever beam can be efficiently damped if the potential distribution on all the PZT plates is optimized.
机译:减振是提高机械零件寿命和性能的有效策略。在这方面,无源控制系统成本较低,易于实施,但其带宽有限,而有源系统可提供较大的带宽和对动态负载的更高适应性,但需要较高的成本和复杂性。智能材料的最新进展促进了适用于减振和控制的智能结构的发展。在它们之间,压电系统似乎是最有前途的,但是其效率取决于它们的位置。在先前的工作中,作者提出并验证了一种分析方法,该方法可检测压电板的最佳位置以控制悬臂梁的多模态振动。最近的发现表明,如果同时激活所有执行器,则优化问题可以追溯到确定所有压电执行器上的最佳电势分布。在本文中,将上述方法考虑在内,并在电动振动器提供的激励下,将其应用于具有13对表面安装的PZT板的悬臂梁。两种弯曲模式组合的实验阻尼是通过专用工作台进行的,阻尼效率的评估是通过微型I.C.P.加速度计。结果表明,如果优化所有PZT板上的电势分布,可以有效地抑制悬臂梁的多模振动。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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