期刊文献+

温度梯度场中梁的形变控制研究

Shape control of a beam in a thermal gradient field
在线阅读 下载PDF
导出
摘要 5介绍了一种新型的压电作动器—层叠式压电作动器,并使用这种作动器对温度场中的梁进行了形状控制研究。根据哈密顿原理,得到了粘贴有层叠式压电作动器的梁结构的控制方程,进行了数值仿真,并且用Comsol软件进行了模拟,两者的结果基本一致。对压电作动器的控制电压进行了优化,得到了最优控制电压。由于层叠式压电作动器的控制力与压电片的层数成二次函数关系,当控制电压恒定时,层叠式压电作动器的控制力随着压电器层数的增加而迅速减小。使用层叠式压电作动器可以在比其他作动器更小的电压下取得更好的控制效果。通过与普通压电作动器的比较,可以发现层叠式压电作动器可以有效地降低作动器的施加电压,而且可以显著增强控制效果。这种形状控制方法为应用层叠式压电作动器进行薄壁结构的形状控制提供了理论基础。 As many structures are working in temperature gradient fields, change of temperature causes change of thermal stress, then the structures can deform so much so that the structure may be damaged. It is a mayor way to control the shape of the structures using smart materials or intelligent structures. This paper introduces a kind of special piezoelectric actuators-laminated piezoelectric actuators, and conducts a survey of shape control of a beam structure in a temperature gradient field. Based on the Hamilton's principle, the governing equations of the beam bonded with laminated piezoelectric actuators are derived. And numerical simulation is performed, getting a coincident result as the data gotten by Comsol software. In the process of study, the control voltages are optimized to get the optimal control voltages. Because the control forces are quadratic functions of the layer numbers of the laminated piezoelectric actuators, if increase layers of piezoelectric patches, much bigger control forces will be obtained than usual piezoelectric actuators when given same voltages. Especially, a better control effect is achieved also. In a word, compared with usual piezoelectric actuators, using laminated piezoelectric actuators, the working voltages can he lowered effectively, as well as the control result improved validly. The new control method does provide an effective measure to control the shape chanues of the structures in thermal gradient field.
出处 《振动工程学报》 EI CSCD 北大核心 2012年第2期181-185,共5页 Journal of Vibration Engineering
关键词 温度梯度 形状控制 层叠式压电作动器 优化 thermal gradient shape control laminated piezoelectric actuators optimization
  • 相关文献

参考文献8

二级参考文献29

  • 1张希农,博士学位论文,1998年
  • 2Sun D, Mills J K. Control of a rotating cantilever beam using a torque actuator and a distributed piezoelectric polymer actuator[J]. Applied Acoustics, 2002,63:885-899.
  • 3Stobener U, Gaul L. Active vibration control of car body based on experimentally evaluated modal parameters[J]. Mechanical Systems and signal Processing, 2001,15(1) : 173 - 188.
  • 4Saravanan C, Ganesan N, Ramamurti V. Analysis of active damping in composite laminate cylindrical shells of revolution with skewed PVDF sensors/actuators[J]. Composite Structures, 2000,48: 305 - 318.
  • 5Ye R, Tzou H S. Control of adaptive shells with thermal and mechanical excitations[J]. Journal of Sound and vibration,2000,231 (5):1321-1338.
  • 6Tzou H S, Wang D W, Chai W K. Dynamics and distributed control of conical shells laminated with full and diagonal actuators[J]. Journal of Sound and vibration, 2002,256(1) :65 - 79.
  • 7Tzou H S, Ding J H. Optimal control of precision paraboloidal shell structronie systems[J]. Journal of Sound and Vibration, 2004,276:273-291.
  • 8Zhang X N, Li Z M, Zhang J H. Book-block actuator and hybrid control of plate[A]. Proceedings of ICAPV 2000[C]. Beijing: Science Press,2000:79-85.
  • 9Yang J S,Batra R C,Liang X Q.The cylindrical bending vibration of a laminated elastic plate due to piezoelectric actuators.Smart Materials and Structures.1994,3:485-493.
  • 10Vel S S,Batra R C.Three-dimensional analytical solution for hybrid multilayered piezoelectric plates.Transactions of the ASME,2000,67:558-567.

共引文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部