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Dynamic Characteristics and Experimental Research of Dual-Rotor System with Rub-Impact Fault

机译:双转子系统具有耐压故障的动态特性及实验研究

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摘要

Rub-impact fault model for dual-rotor system was further developed, in which rubbing board is regarded as elastic sheet. Sheet elastic deformation, contact penetration, and elastic damping support during rubbing of sheet and wheel disk were considered. Collision force and friction were calculated by utilizing Hertz contact theory and Coulomb model and introducing nonlinear spring damping model and friction coefficient. Then kinetic differential equations of rub-impact under dry rubbing condition were established. Based on one-dimensional finite element model of dual-rotor system, dynamic transient response of overall structure under rub-impact existing between rotor wheel and sheet was obtained. Meanwhile, fault dynamic characteristics and impact of rubbing clearance on rotor vibration were analyzed. The results show that, during the process of rub-impact, the spectrums of rotor vibration are complicated and multiple combined frequency components of inner and outer rotor fundamental frequencies are typical characteristic of rub-impact fault for dual-rotor system. It also can be seen from rotor vibration response that the rubbing rotor’s fundamental frequency is modulated by normal rotor double frequency.
机译:进一步开发了双转子系统的摩擦碰撞故障模型,其中摩擦板被视为弹性片。考虑了片材和轮盘在摩擦过程中的弹性变形,接触渗透和弹性阻尼支撑。通过利用赫兹接触理论和库仑模型来计算碰撞力和摩擦,并引入非线性弹簧阻尼模型和摩擦系数。然后建立了干摩擦条件下摩擦冲击的动力学微分方程。基于双转子系统的一维有限元模型,得到了在转子轮和板上存在的摩擦冲击下整体结构的动态瞬态响应。同时,分析了对转子振动对转子振动的故障动态特性和影响。结果表明,在摩擦冲击过程中,转子振动的频谱是复杂的,内部和外转子基极频率的多个组合频率分量是双转子系统摩擦冲击故障的典型特性。从转子振动响应也可以看出,摩擦转子的基频通过正常转子双倍频率调制。

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