Department of Aeronautics, Universidad Politécnica de Madrid, 28040 Madrid, Spain.
Centre for Microsystems Technology, Ghent University and Imec, Technologiepark 126, 9052 Ghent, Belgium.
Sensors (Basel). 2022 Dec 13;22(24):9766. doi: 10.3390/s22249766.
Non-contact vibration measurements are relevant for non-invasively characterizing the mechanical behavior of structures. This paper presents a novel methodology for full-field vibrational analysis at high frequencies using the three-dimensional digital image correlation technique combined with the projection of a speckle pattern. The method includes stereo calibration and image processing routines for accurate three-dimensional data acquisition. Quantitative analysis allows the extraction of several deformation parameters, such as the cross-correlation coefficients, shape and intensity, as well as the out-of-plane displacement fields and mode shapes. The potential of the methodology is demonstrated on an Unmanned Aerial Vehicle wing made of composite material, followed by experimental validation with reference accelerometers. The results obtained with the projected three-dimensional digital image correlation show a percentage of error below 5% compared with the measures of accelerometers, achieving, therefore, high sensitivity to detect the dynamic modes in structures made of composite material.
非接触式振动测量对于非侵入式地描述结构的机械行为非常重要。本文提出了一种新的方法,使用三维数字图像相关技术结合散斑图案的投影,在高频下进行全场振动分析。该方法包括立体校准和图像处理程序,用于准确的三维数据采集。定量分析允许提取几个变形参数,如互相关系数、形状和强度,以及面外位移场和模态形状。该方法的潜力在复合材料制成的无人机机翼上得到了验证,随后通过与参考加速度计的实验验证。与加速度计的测量值相比,投影三维数字图像相关获得的结果误差百分比低于 5%,因此,对复合材料制成的结构的动态模式具有很高的检测灵敏度。