首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >A study of the effect of contaminant particles in lubricants using wear debris and vibration condition monitoring techniques
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A study of the effect of contaminant particles in lubricants using wear debris and vibration condition monitoring techniques

机译:使用磨损碎片和振动状态监测技术研究润滑剂中污染物颗粒的影响

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摘要

Vibration and wear debris analyses are the two main conditions monitoring techniques for machinery maintenance and fault diagnosis. These two techniques have their unique advantages and disadvantages associated with the monitoring and fault diagnosis of machinery. When these techniques are conducted independently, only a portion of machine faults are typically diagnosed. However, practical experience has shown that integrating these two techniques in a machine condition monitoring program provides greater and more reliable information, bringing significant cost benefits to industry. The objective of this work is to investigate the correlation between vibration analysis and wear debris analysis. This was achieved by investigating different operating conditions of an experimental rig, consisting of a worm gearbox driven by an electric motor. The worm gearbox was initially run under normal operating conditions as a comparative test. A series of tests were then conducted corresponding to lack of proper lubrication, and with different contaminant particles added to the various lubricants. Oil samples and vibration data were regularly collected. Numerical data produced by wear debris analysis were compared with vibration spectra, in order to quantify the effectiveness of the two condition monitoring techniques. The results from this paper have given more understanding on the dependent and independent roles of vibration and wear debris analyses in predicting and diagnosing machine faults.
机译:振动和磨损碎片分析是机械维护和故障诊断的两种主要状态监测技术。这两种技术具有与机械的监视和故障诊断相关的独特优点和缺点。当这些技术独立进行时,通常仅诊断出一部分机器故障。但是,实践经验表明,将这两种技术集成到机器状态监视程序中可以提供更多,更可靠的信息,从而为工业带来可观的成本优势。这项工作的目的是研究振动分析和磨损碎片分析之间的相关性。这是通过研究实验装置的不同操作条件来实现的,该实验装置包括由电动机驱动的蜗杆变速箱。蜗轮变速箱最初在正常运行条件下运行,作为对比测试。然后进行了一系列的测试,以适应缺乏适当的润滑,并且在各种润滑剂中添加了不同的污染物颗粒。定期收集油样和振动数据。将磨损碎片分析产生的数值数据与振动光谱进行比较,以量化这两种状态监测技术的有效性。本文的结果使人们更加了解振动和磨损碎片分析在预测和诊断机器故障中的依赖性和独立性。

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