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首页> 外文期刊>Journal of Mechanical Science and Technology >Application of a LIPCA for the Structural Vibration Suppression of an Aluminum Cantilever Beam with a Tip Mass
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Application of a LIPCA for the Structural Vibration Suppression of an Aluminum Cantilever Beam with a Tip Mass

机译:LIPCA在具有尖端质量的铝悬臂梁的结构振动抑制中的应用

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Use of bare PZT as an actuator in the field of active vibration suppression may cause some drawbacks such as critical breaks in the installation process, short circuits in the host material and low fatigue performance. To alleviate these problems, we developed a new actuator called a lightweight piezocomposite actuator (LIPCA). The LIPCA has five layers: three glass-epoxy layers, a carbon-epoxy layer and a PZT layer. We implemented a LIPCA as an actuator to suppress the vibration of an aluminum cantilever beam with a tip mass. For the control algorithm in our test, we used positive position feedback. The filter frequency for this type of feedback should be tuned to the frequency of the target mode. The first three experimental natural frequencies of the aluminum cantilever beam agree well with the results of finite element methods. The effectiveness of using a LIPCA as an actuator in active vibration suppression was investigated with respect to the time and frequency domains, and the experimental results show that LIPCAs can significantly reduce the amplitude of forced vibrations as well as the settling time of free vibrations.
机译:在主动振动抑制领域中,将裸露的PZT用作致动器可能会导致一些缺陷,例如安装过程中的重大断裂,主体材料短路以及疲劳性能低下。为了缓解这些问题,我们开发了一种新型的执行器,称为轻型压电复合执行器(LIPCA)。 LIPCA具有五层:三个玻璃环氧层,一个碳环氧层和一个PZT层。我们将LIPCA用作执行器,以抑制带有尖端质量的铝悬臂梁的振动。对于我们测试中的控制算法,我们使用正位置反馈。此类反馈的滤波器频率应调整为目标模式的频率。铝悬臂梁的前三个实验固有频率与有限元方法的结果非常吻合。在时域和频域上研究了使用LIPCA作为执行器来抑制主动振动的有效性,实验结果表明,LIPCA可以显着减小强迫振动的幅度以及自由振动的建立时间。

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