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首页> 外文期刊>International Journal of Mechanical Sciences >Crack detection in beams using experimental modal data and finite element model
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Crack detection in beams using experimental modal data and finite element model

机译:使用实验模态数据和有限元模型的梁裂纹检测

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In this paper, an analytical, as well as experimental approach to the crack detection in cantilever beams by vibration analysis is established. An experimental setup is designed in which a cracked cantilever beam is excited by a hammer and the response is obtained using an accelerometer attached to the beam. To avoid non-linearity, it is assumed that the crack is always open. To identify the crack, contours of the normalized frequency in terms of the normalized crack depth and location are plotted. The intersection of contours with the constant modal natural frequency planes is used to relate the crack location and depth. A minimization approach is employed for identifying the cracked element within the cantilever beam. The proposed method is based on measured frequencies and mode shapes of the beam.
机译:本文建立了一种通过振动分析检测悬臂梁裂纹的分析方法和实验方法。设计了一个实验装置,其中用锤子激发破裂的悬臂梁,并使用附着在该梁上的加速度计获得响应。为了避免非线性,假定裂纹始终是开放的。为了识别裂纹,绘制了根据归一化裂纹深度和位置绘制的归一化频率轮廓。等高线与恒定模态固有频率平面的交点用于关联裂纹的位置和深度。采用最小化方法来识别悬臂梁内的破裂元件。所提出的方法是基于测得的光束频率和振型。

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