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Bending and twisting vibration control of a cantilever plate via electromechanical surface damping

机译:通过机电表面阻尼控制悬臂板的弯曲和扭转振动

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Abstract: The electromechanical surface damping technique (EMSD) is applied to suppress the bending and twisting peak vibration amplitudes of a cantilever plate. The technique is a combination of the constrained layer damping (CLD) and the shunted piezoelectric methods in which the constraining layer of the CLD is replaced by a shunted piezoelectric ceramic. The frequency responses, to a white noise random base excitation, of the EMSD-treated plate at the vicinity of the first and second bending and twisting resonant frequencies are determined and compared with the corresponding responses of the CLD-treatment. It is shown that, in general, the EMSD treatment provides more suppression of the bending and twisting peak vibration amplitudes than the conventional CLD treatment. The EMSD treatment, however, is more effective at higher frequencies and lower temperatures, which suggests that the EMSD method can be applied to extend the effective range of frequencies and/or temperatures of the conventional CLD method. The work presented is primarily analytical, however crude and preliminary experimental results are presented in order to demonstrate the feasibility of the EMSD technique. !8
机译:摘要:机电表面阻尼技术(EMSD)用于抑制悬臂板的弯曲和扭曲峰值振动幅度。该技术是约束层阻尼(CLD)和分流压电方法的组合,其中CLD的约束层被分流压电陶瓷代替。确定在第一和第二弯曲和扭曲共振频率附近的经EMSD处理的板对白噪声随机基础激发的频率响应,并将其与CLD处理的相应响应进行比较。结果表明,与常规的CLD处理相比,通常EMSD处理对弯曲和扭曲峰值振动幅度的抑制作用更大。但是,EMSD处理在较高的频率和较低的温度下更有效,这表明EMSD方法可用于扩展常规CLD方法的频率和/或温度的有效范围。提出的工作主要是分析性的,但是提出了粗略的初步实验结果以证明EMSD技术的可行性。 !8

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