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Vibration Analysis of Perforated Plates Using Time-Average Digital Speckle Pattern Interferometry

机译:使用时间平均数字散斑图干涉法的穿孔板振动分析

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Digital Speckle Interferometry is a non invasive full-field coherent optical technique used in mechanical vibration measurement. In this research, it is used for tuning resonant frequencies of vibrating plates in order to investigate the dynamical behavior of perforated plates. The plate was excited to resonant vibration by a sinusoidal acoustic source. Fringe pattern produced during the time-average recording of the vibrating plate, for several resonant frequencies were registered. Results of plates fixed at one edge having internal holes and attached masses are presented. Experimental natural frequencies and modal shapes are compared to those obtained by an analytical approximate solution based on the Rayleigh-Ritz method with the use of orthogonal polynomials as coordinate function. A high degree of correlation between computational analysis and experimental results was observed, proving the potentiality of the optical technique as experimental validation of the numerical simulations.
机译:数字散斑干涉测量法是一种用于机械振动测量的非侵入性全场相干光学技术。在这项研究中,它用于调整振动板的共振频率,以研究多孔板的动力学行为。该板被正弦声源激发到共振振动。记录了在振动板的时间平均记录期间针对几个共振频率产生的条纹图案。给出了固定在具有内部孔和附着质量的边缘的板的结果。将实验固有频率和模态形状与通过基于正交多项式作为坐标函数的基于Rayleigh-Ritz方法的解析近似解获得的结果进行比较。观察到了计算分析与实验结果之间的高度相关性,证明了光学技术作为数值模拟的实验验证的潜力。

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