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首页> 外文期刊>Journal of intelligent material systems and structures >Simultaneous Extension and Shear Piezoelectric Actuation for Active Vibration Control of Sandwich Beams
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Simultaneous Extension and Shear Piezoelectric Actuation for Active Vibration Control of Sandwich Beams

机译:同时伸展和剪切压电致动用于夹层梁的主动振动控制

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摘要

Piezoelectric materials are widely used as distributed means for sensing and/or actuating a structure's response, either by bonding them to the surfaces of a structure or embedding them into a laminate structure. Surface-mounted actuators are normally poled in thickness direction so that they work in the extension mode, while embedded actuators are more effective when poled in the longitudinal direction and thus working in the thickness-shear mode. It has been shown that embedded shear actuators may lead to less problems of actuators damage and debonding, minor dependence on actuators position, and length and smaller stresses in the actuators. It has also been observed that the surface-mounted extension actuators are generally more effective for very flexible host structures while embedded shear actuators are more effective for stiffer structures. These and other distinctive features of extension and shear actuators may be exploited to study their simultaneous use and to design a combined extension-shear actuated beam. Hence, this work presents the results of a numerical investigation of active vibration control using simultaneous extension and shear piezoelectric actuation for a clamped-clamped sandwich beam. The analysis is carried out using a laminate/sandwich beam finite element model combined to an optimal control with limited input. Results show that simultaneous use of extension and shear actuators is very promising since their actuation mechanisms are complementary. In particular, a good damping performance was obtained over an increased frequency-range with very localized actuators.
机译:通过将压电材料粘结到结构的表面或嵌入到层压结构中,压电材料被广泛用作感测和/或激活结构响应的分布式手段。表面安装的执行器通常在厚度方向上极化,因此它们可以在延伸模式下工作,而嵌入式执行器在纵向方向上极化并因此在厚度剪切模式下更有效。已经表明,嵌入式剪切致动器可以导致较少的致动器损坏和脱胶问题,对致动器位置的较小依赖性以及致动器中的长度和较小的应力。还已经观察到,表面安装的延伸致动器通常对于非常柔性的主体结构更有效,而嵌入式剪切致动器对于较硬的结构更有效。可利用拉伸和剪切致动器的这些和其他独特特征来研究它们的同时使用并设计组合的拉伸-剪切致动梁。因此,这项工作提出了对同时进行的夹钳夹层梁同时伸缩和剪切​​压电致动进行主动振动控制的数值研究结果。使用层压/夹层梁有限元模型进行分析,并结合有限的输入来优化控制。结果表明,拉伸和剪切执行器同时使用非常有前景,因为它们的执行机构是互补的。特别是,使用非常本地化的执行器,在增加的频率范围内可获得良好的阻尼性能。

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