首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Experimental investigation of the fault diagnosis of typical faults in reciprocating compressor valves
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Experimental investigation of the fault diagnosis of typical faults in reciprocating compressor valves

机译:往复式压缩机气门典型故障诊断的实验研究

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The failure of suction/discharge valves is the most common cause of unscheduled compressor shutdowns; therefore, the in-time fault diagnosis of valves is crucial to the reliable operation of reciprocating compressors. Major valve faults include leakage, valve flutter, delayed closing, and improper lift. To determine the features for diagnosing these typical valve faults, this paper presents an experimental study of the fault diagnosis of reciprocating compressor valves with acoustic emission technology and simulated valve motion. The measured AE signals and simulated valve motions of normal and failed valves are studied. The results of the fault diagnosis indicate that an earlier occurrence of the suction process can diagnose suction valve leakage and that an earlier occurrence of the discharge process can be used for detecting discharge valve leakage. The leakage also causes an increase in the amplitude of the continuous acoustic emission signal. Valve faults resulting from improper valve lift can be diagnosed by the amplitude of the burst acoustic emission signal. The number of burst acoustic emission signals and the shape of the simulated valve motion can be used to monitor the valve flutter conditions. The location where the valve closes can diagnose a valve-delayed closing fault.
机译:吸气/排气阀故障是压缩机意外停机的最常见原因。因此,阀门的及时故障诊断对于往复式压缩机的可靠运行至关重要。阀门的主要故障包括泄漏,阀门颤动,关闭延迟和升程不当。为了确定诊断这些典型阀门故障的特征,本文提出了一种利用声发射技术和模拟阀门运动对往复式压缩机阀门进行故障诊断的实验研究。研究了正常和故障阀门的测得的声发射信号和模拟的阀门运动。故障诊断的结果表明,吸气过程的较早发生可以诊断出吸气阀泄漏,而排气过程的较早发生可以用于检测排气阀泄漏。泄漏还导致连续声发射信号的幅度增加。气门升程不当导致的气门故障可以通过突发声发射信号的幅度来诊断。突发声发射信号的数量和模拟气门运动的形状可用于监视气门颤动情况。阀门关闭的位置可以诊断阀门延迟的关闭故障。

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