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Response-Only Frequency-Domain Method for Structural Damage Detection

机译:仅响应频域的结构损伤检测方法

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This paper proposes a response-only method in frequency domain for structural damage detection by using the derivative of natural frequency curve of beam-like structures with a traversing auxiliary mass. The approach just uses the response time history of beam-like structures and does not need the external source of force excitation. The natural frequencies of a damaged beam with a traversing auxiliary mass change due to change in flexibility and inertia of the beam as the auxiliary mass is traversed along the beam. Therefore the auxiliary mass can enhance the effects of the crack on the dynamics of the beam and, therefore, facilitating locating the damage in the beam. That is, the auxiliary mass can be used to probe the dynamic characteristic of the beam by traversing the mass from one end of the beam to the other. However, it is impossible to obtain accurate modal frequencies by the direct operation of the Fast Fourier Transform of the response data of the structure because the frequency spectrum can be only calculated from limited sampled time data which results in the well-known leakage effect. A spectrum correction method is employed to estimate high accurate frequencies of structures with a traversing auxiliary mass. In the present work, the modal responses of damaged simply supported beams with auxiliary mass are computed using the Finite Element Analysis. The graphical plots of the natural frequencies versus axial location of auxiliary mass are obtained. The derivatives of natural frequency curve can provide crack information for damage detection of beam-like structures. However, it is suggested that the derivative do not go beyond the third derivative of natural frequency curves to avoid the difference approximation error which will be magnified at higher derivative. The sensitivity of crack index for different noise, crack depth, auxiliary mass and damping ratio are also investigated. The simulated result demonstrated the efficiencyrnand precision of the response-only frequency-domain method which can be recommended for the real application in structural damage detection.
机译:提出了一种横移辅助质量的梁状结构固有频率曲线导数的频域仅响应方法,用于结构损伤的检测。该方法仅使用梁状结构的响应时间历史,而无需外部力激励源。当辅助质量沿着梁移动时,由于横梁的柔韧性和惯性的变化,具有横越辅助质量的受损横梁的固有频率也会发生变化。因此,辅助质量可以增强裂纹对梁的动力学的影响,并因此有助于将损伤定位在梁中。也就是说,辅助质量可以通过将质量从梁的一端移到另一端来探测梁的动态特性。然而,不可能通过结构的响应数据的快速傅立叶变换的直接操作来获得准确的模态频率,因为频谱只能根据有限的采样时间数据来计算,这导致众所周知的泄漏效应。采用频谱校正方法来估计具有遍历辅助质量的结构的高精度频率。在目前的工作中,使用有限元分析计算了带有辅助质量的简支简支梁的模态响应。获得固有频率对辅助质量轴向位置的图形化图。固有频率曲线的导数可以为梁状结构的损伤检测提供裂纹信息。但是,建议该导数不要超出自然频率曲线的三阶导数,以避免差分近似误差在较高的导数时会放大。还研究了裂纹指数对不同噪声,裂纹深度,辅助质量和阻尼比的敏感性。仿真结果证明了仅响应频域方法的效率和精度,可推荐用于结构损伤检测的实际应用。

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