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Damping Analyses of Structural Vibrations and Shunted Piezoelectric Transducers

机译:结构振动和并联压电传感器的阻尼分析

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Piezoelectric transducers in conjunction with appropriate electric networks can be used as a mechanical energy dissipation device. Alternatively, undesired mechanical energy of a structure could be converted into electrical energy that can be dissipated through a shunt network in the form of Joule heating. This paper presents an experimental method to calculate damping energy in mechanical systems. However, the mathematical description of damping mechanism is much more complicated, and any process responsible for the occurrence of damping is very intricate. Structural and piezoelectric damping are calculated and analysed in the case of pulse switching or SSDI semiactive vibration control technique. This technique which was developed in the field of piezoelectric damping consists in triggering the inverting switch on each extremum of the piezoelectric voltage which induces an increase of the electromechanical energy conversion.
机译:压电换能器与适当的电网结合可以用作机械能量消散装置。可替代地,结构的不期望的机械能可以被转换成可以通过焦耳加热形式的分流网络消散的电能。本文提出了一种计算机械系统阻尼能量的实验方法。但是,阻尼机制的数学描述要复杂得多,并且任何引起阻尼发生的过程都非常复杂。在脉冲切换或SSDI半主动振动控制技术的情况下,对结构和压电阻尼进行了计算和分析。在压电阻尼领域中开发的该技术在于在压电电压的每个极值上触发倒相开关,这导致机电能量转换的增加。

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