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Vibration Analysis at Microscale by Talbot Fringe Projection Method

机译:Talbot条纹投影法在微观尺度上进行振动分析

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摘要

This work focuses on the implementation of a structured light projection technique for the analysis of the 3D vibration modes of microsamples. The Talbot image of a Ronchi grating is projected onto the sample surface passing through one of the objective tube of a stereomicroscope thus realising a fringe projection system at a micrometric scale. An aluminium cantilever beam PZT-driven into harmonic vibration served as test sample for investigating the possibility to get the full-field vibration modes of micro-objects. An automated Fourier transform analysis of the fringe patterns was performed to obtain the full-field time-resolved profile information of the sample at each frame delivered by a high-speed camera with a micrometric resolution. A straightforward procedure for retrieving resonance frequency for different modes and vibration amplitudes along the whole sample surface was implemented. The great sensitivity and the full-field capacities of the proposed experimental procedure allow to put in evidence differences between real and theoretical behaviours hence could be extremely useful for designing and testing structural dynamic response of microstructures and micro-electro-mechanical Systems.
机译:这项工作着重于结构化光投影技术的实施,以分析微量样品的3D振动模式。将Ronchi光栅的Talbot图像通过立体显微镜的物镜之一投影到样品表面上,从而实现了微米级的条纹投影系统。将PZT驱动的铝悬臂梁谐波振动用作测试样本,以研究获得微物体全场振动模式的可能性。对条纹图案进行自动傅里叶变换分析,以获得具有微米级分辨率的高速相机在每个帧处的样品的全场时间分辨轮廓信息。实施了一种简单的方法来检索整个样品表面不同模式和振动振幅的共振频率。拟议的实验程序具有很高的灵敏度和全场能力,因此可以证明真实行为与理论行为之间的差异,因此对于设计和测试微结构和微机电系统的结构动力响应非常有用。

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