Experimental validation of asymmetric PZT optimal shape in the active vibration reduction of triangular plates

IF 0.5 Q4 TELECOMMUNICATIONS
Romuald Kuras, Sebastian Hajder
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引用次数: 0

Abstract

In the active vibration reduction of two-dimensional structures, piezoelectric actuators of regular shapes, e.g. rectangular, circular, are commonly used. However, the shape of the transducers can be irregular, asymmetric (a-PZT), and its geometry can be an object for optimization. The paper presents an experimental validation of the application of optimal shaped a- PZT in the active reduction of triangular plate vibrations. Optimization was based on the criterion of the maximum bending moment. This means that the center of a-PZT is located at the point where the bending moment of the plate has reached its absolute maximum. The isosceles right triangular plate with simply supported edges was chosen as the research object. The research confirms the validity of the criterion used for optimization and may be an introduction to considering the use of optimal a-PZT in the active reduction of vibrations for more complex structures.
非对称 PZT 最佳形状在三角形板主动减振中的实验验证
在二维结构的主动减振中,通常使用矩形、圆形等规则形状的压电致动器。然而,传感器的形状可以是不规则、不对称的(a-PZT),其几何形状也可以是优化的对象。本文通过实验验证了最佳形状的 a- PZT 在主动降低三角板振动中的应用。优化基于最大弯矩标准。也就是说,a-PZT 的中心位于板的弯矩达到绝对最大值的位置。研究对象选择了具有简单支撑边缘的等腰直角三角形板。这项研究证实了用于优化的标准的有效性,并为考虑在更复杂结构的主动减振中使用最优 a-PZT 提供了参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.50
自引率
14.30%
发文量
0
审稿时长
12 weeks
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