首页> 外文期刊>American journal of engineering and applied sciences >IDENTIFICATION OF MULTI-CRACKS IN THE GATE ROTOR SHAFT BASED ON THE WAVELET FINITE ELEMENT METHOD | Science Publications
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IDENTIFICATION OF MULTI-CRACKS IN THE GATE ROTOR SHAFT BASED ON THE WAVELET FINITE ELEMENT METHOD | Science Publications

机译:基于小波有限元法的门转子轴多裂纹识别科学出版物

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> In order to have fault identification for the gate rotor shaft with multiple cracks effectively, the quantity identification method of the gate rotor shaft with multiple cracks based on wavelet finite element method is established and the frequency test of the gate rotor shaft based on blind source separation algorithm is analyzed. Firstly the wavelet finite element was established by combining the Daubechies wavelet theory and the traditional finite element theory and then the vibration equations of intact and cracked wavelet finite element were obtained, which were applied to compute the changing rate of the natural frequencies for the cracked gate rotor shaft. Then natural frequencies fitting curve surface of the cracked gate rotor shaft with were acquired based on the wavelet finite element method and the identification procedure of the cracks was confirmed and the gate rotor shaft with two different cracks was analyzed and the results showed that the wavelet finite element could predict the multi-cracks correctly.
机译: >为了有效地识别多裂纹门转子轴的故障,建立了基于小波有限元方法的多裂纹门转子轴的数量识别方法,并对门频率进行了测试。分析了基于盲源分离算法的转子轴。首先结合Daubechies小波理论和传统的有限元理论建立小波有限元,然后得到完整的和破裂的小波有限元的振动方程,并将其用于计算开裂门固有频率的变化率。转子轴。然后,基于小波有限元方法,获得了与裂纹门转子轴的曲面拟合的固有频率,确定了裂纹的识别过程,并对两种不同裂纹的门转子轴进行了分析,结果表明,该子波有限元素可以正确预测多裂纹。

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