首页> 外文期刊>International Journal of Structural Engineering >Crack identification in a cantilever beam using rotational laser vibrometer-based coupled of bending, axial and torsional vibrations
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Crack identification in a cantilever beam using rotational laser vibrometer-based coupled of bending, axial and torsional vibrations

机译:基于旋转激光振动计的弯曲,轴向和扭转振动耦合识别悬臂梁中的裂纹

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In this paper, coupled response measurements are suggested for detection of a transverse surface crack in a cantilever beam. The crack has been modelled by a local compliance matrix of six degrees of freedom and simulated for detection. The eigenfrequencies are obtained using finite element method (FEM) and are compared with those of experiments. However, the small changes in eigenfrequencies are not enough for crack detection. The flexibility matrix contains non-diagonal terms, and thus indicating the coupling among the different modes of vibrations. A harmonic force of known amplitude and frequency is used to dynamically excite the beam in bending mode. But due to the presence of crack, the bending excitation induced the axial and torsional vibrations also. The measurements of direct (bending) response and coupled (axial and torsional) responses are carried out using triaxial accelerometer and rotational laser vibrometer (RLV). The experiments are carried out for different bending frequencies, crack depths and locations. The results indicate that the coupled responses are very sensitive to crack; hence these measurements are suggested for crack detection.
机译:在本文中,建议使用耦合响应测量来检测悬臂梁中的横向表面裂纹。裂纹已通过六个自由度的局部柔度矩阵进行建模,并进行了仿真以进行检测。本征频率是使用有限元方法(FEM)获得的,并与实验进行了比较。但是,特征频率的微小变化不足以检测裂纹。柔度矩阵包含非对角项,因此指示了不同振动模式之间的耦合。使用已知振幅和频率的谐波力以弯曲模式动态激发光束。但是由于裂纹的存在,弯曲激励也引起了轴向和扭转振动。使用三轴加速度计和旋转激光振动计(RLV)进行直接(弯曲)响应和耦合(轴向和扭转)响应的测量。针对不同的弯曲频率,裂纹深度和位置进行了实验。结果表明,耦合响应对裂纹非常敏感。因此建议将这些测量用于裂纹检测。

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