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Active vibration control of a smart pultruded fiber-reinforced polymer I-beam

机译:智能拉挤纤维增强工字梁的主动振动控制

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Advanced and innovative materials and structures are increasingly used in civil infrastructure applications. By combining the advantages of composites and smart sensors and actuators, active or smart composite structures can be created and be efficiently adopted in practical structural applications. This paper presents results on active vibration control of pultruded fiber-reinforced polymer (FRP) composite thin-walled I-beams using smart sensors and actuators. The FRP I-beams are made of E-glass fibers and polyester resins. The FRP I-beam is in a cantilevered configuration. The PZT (lead zirconate titanate) type of piezoelectric ceramic patches are used as smart sensors and actuators. These patches are surface bonded near the cantilevered end of the I-beam. Utilizing results from modal analyses and experimental modal testing, several active vibration control methods, such as position feedback control, strain rate feedback control and lead compensation, are investigated. Experimental results demonstrate that the proposed methods achieve effective vibration control of FRP I-beams. For instance, the modal damping ratio of the strong direction first bending mode increases by more than 1000% with positive position feedback control.
机译:先进和创新的材料和结构越来越多地用于民用基础设施。通过将复合材料与智能传感器和执行器的优点相结合,可以创建主动或智能复合结构,并在实际结构应用中有效地采用它们。本文介绍了使用智能传感器和执行器对拉挤纤维增强聚合物(FRP)复合薄壁工字梁进行主动振动控制的结果。 FRP工字梁由电子玻璃纤维和聚酯树脂制成。 FRP工字梁处于悬臂配置。 PZT(锆钛酸铅)类型的压电陶瓷贴片用作智能传感器和执行器。这些贴片在工字梁的悬臂端附近表面粘合。利用模态分析和实验模态测试的结果,研究了几种主动振动控制方法,例如位置反馈控制,应变率反馈控制和超前补偿。实验结果表明,所提出的方法可以有效地控制FRP工字钢的振动。例如,通过正位置反馈控制,强方向第一弯曲模式的模态阻尼比增加了1000%以上。

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