首页> 外文会议>Conference on Speckle Metrology 2003 Jun 18-20, 2003 Trondheim, Norway >Simplified time-averaged digital interferometry for vibration studies of microelements
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Simplified time-averaged digital interferometry for vibration studies of microelements

机译:简化的时间平均数字干涉仪,用于微元素的振动研究

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Among interferometric techniques for analyzing mechanical properties and behaviors of microelements and microsystems time-averaged interferometry deserves particular attention because of its relative simplicity and data video display for arbitrary vibration frequency. This communication presents an implementation of the approach of Petitgrand et al. to quantitative analysis of vibration mode shapes based on the calibration of the fringe contrast variation as a function of the vibration amplitude. Fringe contrast maps for static and resonant frequency states are determined using the four-frame method with the phase shift of π/2 between the frames. Then the dynamic map is divided by the static one to obtain the square of the modulus of the characteristic fringe function. For sinusoidal vibrations it is the zero-order Bessel function J_0 squared with the vibration amplitude encoded in its argument. The simplicity of our approach and speed of calculations are to be emphasized. The fringe processing method proposed is suitable for conventional two-beam and digital speckle interferometry. The results of experiments carried with silicone cantilever beams used in AFM resonant sensors are presented.
机译:在用于分析微量元素和微系统的机械性能和行为的干涉技术中,由于时间平均干涉法相对简单,并且可以针对任意振动频率进行数据视频显示,因此值得特别关注。此通信介绍了Petitgrand等人方法的实现。基于条纹对比度变化作为振动幅度的函数的校准,对振动模式形状进行定量分析。静态和共振频率状态的边缘对比图是使用四帧方法确定的,其中两帧之间的相移为π/ 2。然后将动态图除以静态图,以获得特征条纹函数模量的平方。对于正弦振动,它是零阶贝塞尔函数J_0,其平方与参数中编码的振动幅度成平方。要强调我们方法的简单性和计算速度。提出的条纹处理方法适用于常规的两光束和数字散斑干涉测量。给出了在AFM共振传感器中使用硅悬臂梁进行的实验结果。

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