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Lateral vibration attenuation of a beam with circular cross-section by a support with integrated piezoelectric transducers shunted to negative capacitances

机译:带有集成压电换能器的支架将具有圆形横截面的梁的横向振动衰减至负电容

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摘要

Undesired vibration may occur in lightweight structures due to excitation and low damping. For the purpose of lateral vibration attenuation in beam structures, piezoelectric transducers shunted to negative capacitances can be an appropriate measure. In this paper, a new concept for lateral vibration attenuation by integrated piezoelectric stack transducers in the elastic support of a beam with circular cross-section is presented. In the piezoelastic support, bending of the beam in an arbitrary direction is transformed into a significant axial deformation of three stack transducers and, thus, the beam's surface may remain free from transducers. For multimodal vibration attenuation, each piezoelectric transducer is shunted to a negative capacitance. It is shown by numerical simulation and experiment that the concept of an elastic beam support with integrated shunted piezoelectric stack transducers is capable of reducing the lateral vibration of the beam in an arbitrary direction.
机译:由于激励和低阻尼,轻型结构中可能发生不希望的振动。为了减小梁结构中的横向振动,分流至负电容的压电换能器可能是合适的措施。在本文中,提出了一种新的概念,用于在圆形截面梁的弹性支撑中集成压电叠层换能器的横向振动衰减。在压电弹性支撑中,梁在任意方向上的弯曲会转换为三个堆叠换能器的明显轴向变形,因此,梁的表面可能没有换能器。对于多模态振动衰减,每个压电换能器均并联至一个负电容。通过数值模拟和实验表明,带有集成式并联压电叠层换能器的弹性梁支架的概念能够减少梁在任意方向上的横向振动。

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