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Wavelet analysis based damage localization in steel frames with bolted connections

机译:基于小波分析的螺栓连接钢框架损伤定位

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This paper describes an application of wavelet analysis for damage detection of a steel frame structure with bolted connections. The wavelet coefficients of the acceleration response for the healthy and loosened connection structure were calculated at each measurement point. The difference of the wavelet coefficients of the response of the healthy and loosened connection structure is selected as an indicator of the damage. At each node of structure the norm of the difference of the wavelet coefficients matrix is then calculated. The point for which the norm has the higher value is a candidate for location of the damage. The above procedure was experimentally verified on a laboratory-scale 2-meter-long steel frame. The structure consists of 11 steel beams forming a four-bay frame, which is subjected to impact loads using a modal hammer. The accelerations are measured at 20 different locations on the frame, including joints and beam elements. Two states of the structure are considered: healthy and damaged one. The damage is introduced by means of loosening two out of three bolts at one of the frame connections. Calculating the norm of the difference of the wavelet coefficients matrix at each node the higher value was found to be at the same location where the bolts were loosened. The presented experiment showed the effectiveness of the wavelet approach to damage detection of frame structures assembled using bolted connections.
机译:本文介绍了小波分析在螺栓连接钢框架结构损伤检测中的应用。在每个测量点计算健康和松动的连接结构的加速度响应的小波系数。选择健康的和松动的连接结构的响应的小波系数的差异作为损伤的指标。然后在结构的每个节点上计算小波系数矩阵之差的范数。规范具有较高值的​​点是损坏位置的候选项。以上步骤已在实验室规模的2米长的钢框架上进行了实验验证。该结构由11个钢梁组成,形成一个四托架框架,并使用模态锤承受冲击载荷。在框架上的20个不同位置(包括节和梁单元)测量加速度。考虑结构的两种状态:健康状态和损坏状态。通过松开其中一个框架连接处的三个螺栓中的两个螺栓来引入损坏。计算每个节点的小波系数矩阵之差的范数,发现较高的值位于螺栓松开的相同位置。提出的实验表明了小波方法对使用螺栓连接组装的框架结构的损伤检测的有效性。

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