临界转速
直升机旋翼
转子(电动)
振动
结构工程
机械
谐波平衡
临界电离速度
运动方程
物理
工程类
经典力学
声学
非线性系统
量子力学
作者
Yue Yang,Jianjun Wang,Yanlin Wang,Chao Fu,Qian Zheng,Kuan Lu
标识
DOI:10.1177/1461348420948287
摘要
In this paper, we considered a dual-rotor system with crack in shaft. The influence of circular crack in hollow shaft on dynamical response was studied. The equations of motion of 12 elements dual-rotor system model were derived. Harmonic balance method was employed to solve the equations. The critical speed and sub-critical speed responses were investigated. It was found that the circular crack in hollow shaft had greater influence on the first-backward critical speed than the first-forward critical speed. Owing to the influence of crack, the vibration peaks occurred at the 1/2, 1/3 and 1/4 critical speeds of the rotor system, along with a reduction in sub-critical speeds and critical speeds. The deeper crack away from the bearing affected the rotor more significantly. The whirling orbits, the time-domain responses and the spectra were obtained to show the super-harmonic resonance phenomenon in hollow-shaft cracked rotor system.
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