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Comparison of shearography to scanning laser vibrometry as methods for local stiffness identification of beams

机译:剪切成像与扫描激光振动测量法作为梁局部刚度识别方法的比较

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摘要

Local stiffness of Euler–Bernoulli beams can be identified by dividing the bending moment of a deformed beam by the local curvature. Curvature and moment distributions can be derived from the modal shape of a beam vibrating at resonance. In this article, the modal shape of test beams is measured by both scanning laser vibrometry (SLV) and shearography. Shearography is an interferometric optical method that produces full-field displacement gradients of the inspected surface. Curvature can be obtained by two steps of derivation of the modal amplitude (in the case of SLV) or one step of derivation of the modal shape slope (in the case of shearography). Three specially prepared aluminium beams with a known stiffness distribution are used for the validation of both techniques. The uncertainty of the identified stiffness distributions with both techniques is compared and related to their signal-to-noise ratios. A strength and weakness overview at the end of the article reveals that the shearography is the technique that shows the most advantages.
机译:欧拉-伯努利梁的局部刚度可以通过将变形梁的弯矩除以局部曲率来确定。曲率和力矩分布可以从共振时振动的光束的模态形状得出。在本文中,测试光束的模态形状通过扫描激光振动测定法(SLV)和剪切成像法进行测量。剪切成像是一种干涉光学方法,可产生被检查表面的全场位移梯度。曲率可以通过两步推导模态振幅(对于SLV)或一步推导模态形状斜率(对于剪切成像法)来获得。三种已知技术的特制铝梁均具有已知的刚度分布。比较了两种技术所确定的刚度分布的不确定性,并将其与信噪比相关。本文结尾处的优势和劣势概述表明,剪切成像技术是显示出最大优势的技术。

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