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Experimental damage evaluation of open and fatigue cracks of multi-cracked beams by using wavelet transform of static response via image analysis

机译:基于图像分析的静响应小波变换对多裂纹梁开放和疲劳裂纹的实验损伤评估

摘要

In this study, a method for crack detection and quantification in beams based on wavelet analysis is presented. The static deflection is measured at particular points along the length of (i) real damaged structures, using few displacement transducers and a laser sensor, and (ii) simulated structures, using closed-form analysis, for a given location of a concentrated load along the beam. Furthermore, the measurement of the beam displacements in a large number of spatially distributed points is made by processing digital photographs of the beam. The smoothed deflection responses of the cracked beams are then analyzed using the wavelet transform. For this purpose, a Gaus2 wavelet with two vanishing moments is utilized. The wavelet transform spikes are used as indicators to locate and quantify the damage; furthermore, the multi-scale theory of wavelet is employed, in order to eliminate or at least reduce the spurious peaks and enhance the true ones. Simply supported beams with single and double cracks are used to demonstrate the devised methodology. Open and fatigue cracks of different sizes and locations have been used in the examples. In a closed-form analysis, the damage is modeled as a bilinear rotational spring with reduced stiffness in the neighborhood of the crack location. Damage calibration of simply supported steel beams with open and fatigue cracks has been carried out experimentally using this technique. A generalized curve has been proposed to quantify the damage in a simply supported beam. Based on the experimental study, the spatial wavelet transform is proven to be effective to identify the damage zone even when the crack depth is around 3% of the height of the beam.
机译:在这项研究中,提出了一种基于小波分析的梁裂纹检测和量化方法。静态挠度是沿着(i)实际受损结构的长度在特定点上测量的,其中使用了很少的位移传感器和激光传感器,并且(ii)使用封闭形式分析的模拟结构,针对沿集中方向的给定位置光束。此外,通过处理光束的数字照片来测量在大量空间分布点中的光束位移。然后使用小波变换分析裂纹光束的平滑偏转响应。为此,利用了具有两个消失矩的Gaus2小波。小波变换的尖峰信号被用作定位和量化损伤的指标。此外,采用小波多尺度理论,以消除或至少减少虚假峰值并增强真实峰值。具有单裂纹和双裂纹的简支梁被用来证明所设计的方法。实例中使用了不同大小和位置的开裂和疲劳裂纹。在闭合形式分析中,将损伤建模为双线性旋转弹簧,其在裂纹位置附近的刚度降低。使用这种技术已经通过实验对带有开裂和疲劳裂纹的简支钢梁进行了损伤标定。已经提出了广义曲线来量化简单支撑梁中的损伤。根据实验研究,即使裂缝深度约为梁高的3%,空间小波变换也被证明可以有效地识别损伤区域。

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