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A new crack detection method in a beam under geometrically nonlinear vibration

机译:几何非线性振动下梁的裂纹检测新方法

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In this paper, by analyzing the geometrically nonlinear vibrations of a cracked beam under harmonic excitation, a new crack sensitive parameter is introduced to recognize the open edge crack in a beam. The beam is assumed to be clamped at both ends, so that, increasing the amplitude of vibration results in stretching of the beam longitudinally and causes the beam vibrations to be geometrically nonlinear. By extracting the nonlinear forced vibration equations and solving them using perturbation method, the steady state response of the beam to harmonic excitation with a frequency close to one of the three first natural frequencies is obtained analytically. These responses are then Hilbert transformed, and instantaneous amplitudes are obtained in each case. Based on these data, a new parameter is extracted which is shown to be dependent only on the modal parameters of the cracked beam. Then, this parameter which we call it "Crack Index" is used to detect the crack in a beam under the geometrically nonlinear vibration. It is shown that while the amount of data needed to obtain the crack indexes is the same as those needed to obtain the natural frequencies, these indexes are much more sensitive to crack than the modal parameters.
机译:本文通过分析裂纹梁在谐波激励下的几何非线性振动,引入了新的裂纹敏感参数来识别梁中的开放边缘裂纹。假定梁的两端都被夹紧,因此,增大振动幅度会导致梁纵向拉伸,并使梁的振动在几何上是非线性的。通过提取非线性强迫振动方程并使用摄动法求解,可以解析地获得梁对谐波激励的稳态响应,其频率接近三个第一自然频率之一。然后将这些响应进行希尔伯特变换,并分别获得瞬时振幅。基于这些数据,提取新参数,该新参数显示为仅取决于裂纹梁的模态参数。然后,我们将此参数称为“裂纹指数”,以检测几何非线性振动下梁的裂纹。结果表明,尽管获得裂纹指标所需的数据量与获得固有频率所需的数据量相同,但这些指标对裂纹的敏感性要比模态参数高得多。

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