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Rotor Crack Detection Based On High-precision Modal Parameter Identification Method And Wavelet Finite Element Model

机译:基于高精度模态参数识别方法和小波有限元模型的转子裂纹检测

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摘要

In this paper, a new method based on high-precision modal parameter identification method and wavelet finite element (WFE) model is presented to determine the depth and location of a transverse surface crack in a rotor system. The rotor system is modeled using finite element method of B-spline wavelet on the interval (FEM BSWI), while the crack is equivalent as a weightless rotational spring. Additionally, a novel method based on empirical mode decomposition (EMD) and Laplace wavelet is proposed to acquire modal parameters with high precision, which is implemented to improve the precision of crack identification. By providing the first three natural frequencies, contours for the specified natural frequency are plotted in the same coordinate, and the intersection of the three curves predicts the crack location and size. The experimental results indicate that the proposed method can accurately identify the position and depth of different cracks. The effectiveness and reliability of the proposed method is verified.
机译:本文提出了一种基于高精度模态参数识别方法和小波有限元(WFE)模型的新方法,用于确定转子系统中横向裂纹的深度和位置。使用B样条小波的有限元方法(FEM BSWI)对转子系统进行建模,而裂纹相当于无重力旋转弹簧。此外,提出了一种基于经验模态分解(EMD)和拉普拉斯小波的新方法,以获取高精度的模态参数,以提高裂纹识别的精度。通过提供前三个固有频率,可以在同一坐标中绘制指定固有频率的轮廓,并且三个曲线的交点可预测裂纹的位置和大小。实验结果表明,该方法能够准确识别出不同裂纹的位置和深度。验证了所提方法的有效性和可靠性。

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