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首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Condition Monitoring of Motor-Gear System Dynamics With Rotor and Gear Faults
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Condition Monitoring of Motor-Gear System Dynamics With Rotor and Gear Faults

机译:转子和齿轮故障的电动机系统动力学的状态监测

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摘要

An electromechanical system consisting of an electric motor and planetary gear set is modeled and analyzed in this paper. The model integrates various internal excitations including time-varying gear mesh stiffness, nonlinear spatial effect and, saturation effect, and component flaws. The simulation results predict the effects of rotor and gear faults including broken rotor bar, rotor static and dynamic eccentricity, and tooth root crack of the gear on the electromechanical system behavior. It is verified as the results obtained are in accordance with the features derived within previous researches. Furthermore, new sidebands merged on the dynamic response spectra such as slip frequency harmonics, rotor rotational frequency harmonics, and fault-related rotational frequency harmonics can be applied to detect electrical and mechanical faults in the motor-gear system. This paper lays the foundation for the comprehensive further study of working condition monitoring for the motor-gear system.
机译:本文建模和分析了由电动机和行星齿轮组组成的机电系统。该模型集成了各种内部激励,包括时变齿轮网刚度,非线性空间效果和饱和效应和部件缺陷。仿真结果预测转子和齿轮故障的影响,包括破碎的转子杆,转子静电和动态偏心,以及机电系统行为的齿轮齿根裂纹。它被验证,因为获得的结果符合先前研究中衍生的特征。此外,可以应用于动态响应光谱,转子旋转频率谐波和故障相关的旋转频率谐波的新的边带可以应用于检测电动机齿轮系统中的电气和机械故障。本文为电动机齿轮系统进行了综合进一步研究的基础。

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