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ADAMS Dynamics Simulating and Analysis of Vibration Signal for Deep-Groove Ball Bearings

机译:深沟球轴承振动信号模拟与分析的ADAMS动力学

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This paper presents the dynamics-simulation and research of vibration characteristic on deep-groove ball bearing. It introduces an analysis of the vibration frequency in different damage of bearing and spectrum analysis of the fault signal on bearing to draw response on vibration characteristics in bearing, so as to provide a simple method on research of dynamic fault characteristic of bearing. This work shows some kind, characteristics signal and frequency of fault on bearing. The normal model and other two models which have raceway crack in inside track and out ring are set up by using ADAMS software to analyse the dynamic of them, the test program that vibration signal of three models are obtained by acceleration sensors to instead of that of real condition is simulated. In addition, the test signal of vibration is given in time domain respectively, and the vibration characteristic is identification by using spectrum analysis method, so that it can provides technical support for diagnosis of fault bearing. In the study of fault diagnosis, several experimental results provide that the uncertainty of fault diagnosis and interference of other complicated factors are avoided effectively in real environment. The result of simulated analysis is consistent with the theory calculation. This method is more effective, convenient and expansibility than a research of practical fault-diagnosis.
机译:本文介绍了深沟滚珠轴承振动特性的动力学仿真与研究。它介绍了轴承轴承造成振动频率的分析和轴承故障信号的频谱分析,以造成轴承振动特性的响应,为轴承动态故障特性研究提供了一种简单的方法。这项工作显示了某种特征信号和轴承故障频率。通过使用ADAMS软件来分析它们的动态,建立正常模型和具有滚道裂缝的滚道裂缝的两种型号,通过加速传感器而不是那样的模拟真实条件。此外,分别在时域中给出振动的测试信号,并且通过使用频谱分析方法识别振动特性,因此它可以为诊断故障轴承提供技术支持。在对故障诊断的研究中,有效地在实际环境中有效地避免了几种实验结果,提供了对其他复杂因素的故障诊断和干扰的不确定性。模拟分析的结果与理论计算一致。这种方法比实际故障诊断的研究更有效,方便和可扩展性。

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