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Vibration Suppression of Railway Car Body with Piezoelectric Elements(A Study by Using a Scale Model)

机译:用压电元件抑制铁路车厢的振动(使用比例模型的研究)

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摘要

A new method for improving riding comfort by reducing vertical flexural vibrations in railway car bodies using piezoelectric elements is studied in this paper. Piezoelectric elements are attached on the car body in order to convert vibration energy to electrical energy, which can be dissipated in a shunt circuit. Assuming the car body as an elastically supported Bernoulli-Euler beam, theoretical analysis and numerical simulations are carried out. The numerical results are supplemented by experiments on a 1:5 scale model of a Shinkansen vehicle. Both numerical and experimental results indicate that the method yields significant vibration suppression with only a small amount of added weight. Two types of shunt circuits; a single-mode circuit and a multi-mode circuit are studied.
机译:本文研究了一种使用压电元件通过减少铁路车体的垂直弯曲振动来改善乘坐舒适性的新方法。压电元件连接在车身上,以便将振动能转换为电能,该电能可以在并联电路中消散。假设车身为弹性支撑的伯努利-欧拉梁,则进行了理论分析和数值模拟。通过在新干线汽车的1:5比例模型上进行实验来补充数值结果。数值和实验结果均表明,该方法在仅增加少量重量的情况下,即可显着抑制振动。两种类型的并联电路;研究了单模电路和多模电路。

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