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The dynamic behavior of a rotor system with a slant crack on the shaft

机译:轴上有倾斜裂纹的转子系统的动力学行为

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For a Jeffcott rotor system with a 45° slant crack on the shaft, the motion equations are established with four directions, i.e. two transversal directions, one torsional direction and one longitudinal direction. It can be seen from the deducing process of the stiffness with the strain energy release approach that there are coupling stiffnesses of bending-torsion, bending-tension and torsion-tension for the slant-cracked shaft and only bending-tension for the transverse-cracked one. The paper shows that besides the coupling stiffnesses, there is bending-torsion coupling caused by the eccentricity. All these couplings affect the responses of the slant-cracked shaft and the transverse-cracked one. Comparing responses of a cracked shaft with an open crack model and those with a breathing crack model finds that there are the same prominent characteristic frequencies for these two kinds of shafts, even though the cracked shaft with a breathing crack model behaves much more non-linear than that with an open crack model. Therefore, almost all studies in this paper adopt the open crack model since it needs taking much longer time to compute responses of a breathing cracked shaft than that of an open cracked shaft. Analyses of steady responses indicate that the combined frequencies of the rotating speed and the torsional excitation in the transversal response and the frequency of the torsional excitation in the longitudinal response can be used to detect the slant crack on the shaft of the rotor system.
机译:对于轴上具有45°倾斜裂纹的Jeffcott转子系统,运动方程式建立在四个方向上,即两个横向方向,一个扭转方向和一个纵向方向。从应变能释放方法推导刚度的过程中可以看出,斜裂纹轴具有弯曲扭转,弯曲张力和扭转张力的耦合刚度,而横向裂纹具有弯曲刚度。一。本文表明,除了耦合刚度外,还有偏心引起的弯扭耦合。所有这些联轴器都会影响倾斜裂纹轴和横向裂纹轴的响应。比较带有开放裂纹模型的裂纹轴和带有呼吸裂纹模型的裂纹轴的响应,发现这两种轴都具有相同的突出特征频率,即使带有呼吸裂纹模型的裂纹轴表现出更多的非线性。比使用开放裂缝模型的情况要好。因此,本文中几乎所有的研究都采用开裂模型,因为计算呼吸裂纹轴的响应比开裂轴需要更长的时间。稳态响应分析表明,横向响应中转速和扭转激励的组合频率以及纵向响应中扭转激励的频率可用于检测转子系统轴上的倾斜裂纹。

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