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An adaptive piezoelectric vibration absorber enhanced by a negative capacitance applied to a shell structure

机译:通过施加到壳体结构的负电容增强的自适应压电减震器

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Piezoelectric shunt damping is a well-known technique to damp mechanical vibrations of a structure, using a piezoelectric transducer to convert mechanical vibration energy into electrical energy, which is dissipated in an electrical resistance. Resonant shunts consisting of a resistance and an inductance connected to a piezoelectric transducer are used to damp structural vibrations in narrow frequency bands, but their performance is very sensitive to variations in structural modal frequencies and transducer capacitance. In order to overcome this drawback, a piezoelectric shunt damping technique with improved performance and robustness is presented in this paper. The design of the adaptive circuit considers the variation of the host structure's natural frequency as a project parameter. This paper describes an adaptive resonant piezoelectric vibration absorber enhanced by a synthetic negative capacitance applied to a shell structure. The resonant shunt circuit autonomously adapts its inductance value by comparing the phase difference of the vibration velocity and the current flowing through the shunt circuit. Moreover, a synthetic negative capacitance is added to the shunt circuit to enhance the vibration attenuation provided by the piezoelectric absorber. The circuitry is implemented using analog components. Validation of the proposed method is done by bonding the piezoelectric absorber on a free-formed metallic shell.
机译:压电分流阻尼是一种众所周知的技术,它利用压电换能器将机械振动能转换为电能,从而消散电阻,从而消除结构的机械振动。谐振分流器由连接到压电换能器的电阻和电感组成,用于衰减窄频带中的结构振动,但是其性能对结构模态频率和换能器电容的变化非常敏感。为了克服这个缺点,本文提出了一种具有改善的性能和鲁棒性的压电分流阻尼技术。自适应电路的设计将主体结构固有频率的变化视为项目参数。本文介绍了一种自适应谐振压电减振器,该阻尼器通过将合成负电容应用于壳体结构而得到增强。谐振并联电路通过比较振动速度的相位差和流过并联电路的电流来自动调整其电感值。此外,将合成的负电容添加到分流电路,以增强压电吸收器提供的振动衰减。该电路使用模拟组件实现。通过将压电吸收器粘合在自由成形的金属壳上来完成所提出方法的验证。

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