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Finite element-based analysis of shunted piezoelectric structures for vibration damping

机译:基于有限元的分流压电结构减振分析

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Piezoelectric patches shunted with passive electrical networks can be attached to a host structure for reduction of structural vibrations. This approach is frequently called "shunted piezo damping" and has the advantage of guaranteed stability and low complexity in implementation. For numerical treatment of such structures, a finite element modelling methodology is presented that incorporates both the piezoelectric coupling effects of the patches and the electrical dynamics of the connected passive electrical circuits. It allows direct computation of the achieved modal damping ratios as a major design criterion of interest. The damping ratios are determined from the eigenvalue problem corresponding to the coupled model containing piezoelectric structure and passive electrical circuit. The model includes local stiffening and mass effects as a result of the attached patches and, therefore, enables accurate prediction of the natural frequencies and corresponding modal damping ratios. This becomes crucial for choosing the patch thickness to achieve optimal modal damping for a given host structure. Additionally, structures with complex geometry or spatially varying material properties can easily be handled. Furthermore, the use of a finite element formulation for the coupled model of piezoelectric patches and a host structure facilitates design modifications and systematic investigations of parameter dependencies. In this paper, the impact of parameters of the passive electrical network on modal damping ratios as well as the variation of the patch thickness are studied. An application of this modelling method is realized by commercial software packages by importing fully coupled ANSYS - models in MATLAB. Afterwards, modal truncation is applied, the dynamic equations of the passive electrical network are integrated into the piezoelectric model and eigenvalue problems are solved to extract the increase in modal damping ratios. The numerical results are verified by experiments.
机译:可以将与无源网络并联的压电贴片连接到主机结构上,以减少结构振动。这种方法通常被称为“并联压电阻尼”,其优点是可以保证稳定性和低复杂度。对于此类结构的数值处理,提出了一种有限元建模方法,该方法结合了贴片的压电耦合效应和连接的无源电路的电动力学特性。它允许直接计算所获得的模态阻尼比,作为主要的设计标准。根据与包含压电结构和无源电路的耦合模型相对应的特征值问题确定阻尼比。该模型由于贴有贴片而具有局部刚度和质量效应,因此可以准确预测固有频率和相应的模态阻尼比。这对于选择补丁厚度以实现给定主体结构的最佳模态阻尼至关重要。此外,具有复杂几何形状或空间变化材料特性的结构也可以轻松处理。此外,对于压电贴片和主体结构的耦合模型使用有限元公式化有助于设计修改和参数依赖性的系统研究。本文研究了无源电网参数对模态阻尼比的影响以及贴片厚度的变化。这种建模方法的应用是通过商业软件包通过在MATLAB中导入完全耦合的ANSYS模型来实现的。之后,应用模态截断,将无源电网的动力学方程式集成到压电模型中,并解决特征值问题,以提取模态阻尼比的增加。数值结果通过实验验证。

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