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首页> 外文期刊>The Journal of the Acoustical Society of America >Exploring the resonant vibration of thin plates: Reconstruction of Chladni patterns and determination of resonant wave numbers
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Exploring the resonant vibration of thin plates: Reconstruction of Chladni patterns and determination of resonant wave numbers

机译:探索薄板的共振:Chladni模式的重构和共振波数的确定

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摘要

The Chladni nodal line patterns and resonant frequencies for a thin plate excited by an electronically controlled mechanical oscillator are experimentally measured. Experimental results reveal that the resonant frequencies can be fairly obtained by means of probing the variation of the effective impedance of the exciter with and without the thin plate. The influence of the extra mass from the central exciter is confirmed to be insignificant in measuring the resonant frequencies of the present system. In the theoretical aspect, the inhomogeneous Helmholtz equation is exploited to derive the response function as a function of the driving wave number for reconstructing experimental Chladni patterns. The resonant wave numbers are theoretically identified with the maximum coupling efficiency as well as the maximum entropy principle. Substituting the theoretical resonant wave numbers into the derived response function, all experimental Chladni patterns can be excellently reconstructed. More importantly, the dispersion relationship for the flexural wave of the vibrating plate can be determined with the experimental resonant frequencies and the theoretical resonant wave numbers. The determined dispersion relationship is confirmed to agree very well with the formula of the Kirchhoff-Love plate theory. (c) 2015 Acoustical Society of America.
机译:实验测量了由电子控制的机械振荡器激发的薄板的Chladni节点线模式和谐振频率。实验结果表明,通过探测有无薄板情况下激励器有效阻抗的变化,可以公平地获得谐振频率。在测量本系统的共振频率时,来自中央激励器的额外质量的影响被证实是微不足道的。从理论上讲,利用非均质的亥姆霍兹方程可导出响应函数,该函数是驱动波数的函数,用于重建实验性的Chladni模式。理论上,共振波数由最大耦合效率和最大熵原理确定。将理论谐振波数代入导出的响应函数,可以很好地重建所有实验的Chladni模式。更重要的是,可以通过实验谐振频率和理论谐振波数来确定振动板的弯曲波的色散关系。确认确定的色散关系与Kirchhoff-Love板理论的公式非常吻合。 (c)2015年美国声学学会。

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