低频共振和非共振挠曲振动模式下的 Chladni 模式可视化

B. Suciu, Sota Karimine
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引用次数: 0

摘要

在本研究中,在 10-210 Hz 的低频域中,在钢和铝合金制成的方形板上可视化出与共振和非共振振动模式相对应的 Chladni 模式。利用激光传感器测量了板中心激励点的位移,并从获得的频率响应中确定了共振和反共振振动模式。利用品质因数法,评估了与第一个共振峰相对应的阻尼比。在很宽的激励频率范围内,可以观察到共振模式与非共振模式之间的 Chladni 数字转换。这种 Chladni 图形具有最简单的几何构造,可用于通过控制激励频率来实现颗粒在振动板上的某种所需的运动轨迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Visualization of Chladni Patterns at Low-Frequency Resonant and Non-Resonant Flexural Modes of Vibration
In this study, Chladni patterns corresponding to resonant and non-resonant vibration modes are visualized on square plates made in steel and aluminum alloys in the low frequency domain of 10–210 Hz. Using a laser sensor, the plate displacement at its central excitation point is measured, and from the obtained frequency response, the resonant and anti-resonant vibration modes are identified. Using the quality-factor method, the damping ratio corresponding to the 1st resonant peak is evaluated. Over a wide range of excitation frequencies, transitions of Chladni figures between resonant patterns via non-resonant patterns could be observed. Such Chladni figures, of the simplest geometrical configuration, can be used to achieve a certain desired movement path of the particles on the vibrating plate by controlling the excitation frequency.
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