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Two-dimensional optical coherence vibration tomography for low-frequency vibration measurement and response-only modal analysis

机译:用于低频振动测量和仅响应模态分析的二维光学相干振动层析成像

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摘要

A high-speed camera-based two-dimensional optical coherence vibration tomography (2DOCVT) system with a subnanometre displacement resolution was developed and employed for low-frequency vibration measurement and modal analysis. Experimental results demonstrated the ability of low-frequency absolute displacement measurement of structural line vibrations without scanning. Three-dimensional (3D) surface displacement of a vibrating structure could also be obtained using the developed 2DOCVT by scanning the structure. The scanning 2DOCVT system acted like a 3D optical coherence vibration tomography system. The developed 2DOCVT system could capture structural modal parameters without vibration excitation input information, and therefore, it is a response-only method. The 2DOCVT could be recommended in the application of low-frequency vibration measurement and modal analysis of beam and plate structures, especially when the vibration amplitude is at nanometre or micrometre scale.
机译:开发了具有亚纳米级位移分辨率的基于相机的高速二维光学相干振动层析成像(2DOCVT)系统,并将其用于低频振动测量和模态分析。实验结果证明了无需扫描即可对结构线振动进行低频绝对位移测量的能力。振动结构的三维(3D)表面位移也可以通过使用开发的2DOCVT通过扫描结构来获得。扫描2DOCVT系统的作用类似于3D光学相干振动层析成像系统。开发的2DOCVT系统可以捕获结构模态参数而无需振动激励输入信息,因此,这是一种仅响应的方法。 2DOCVT可以推荐用于梁板结构的低频振动测量和模态分析,特别是当振动幅度为纳米或微米时。

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