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A new non-destructive method for fault diagnosis of reciprocating compressor by measuring the piston rod strain

机译:一种新的非破坏性诊断往复式压缩机的故障诊断方法通过测量活塞杆菌应变

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As an established method to analyse the thermodynamic process inside the cylinder,the p-V diagram can identify typical faults such as leakages through the sealing rings and self-acting valves,loosening and fluttering of the vales,etc.However,the installation of the pressure sensor within the cylinder for recording the p-V diagram may lead to degradation of the cylinder integrity,and hereby potential leakage and lowered strength of the cylinder.This paper presents a new non-destructive method for fault diagnosis of the reciprocating compressor by measuring the piston rod strain,from which the p-V diagram was transformed.An algorithm for reconstruction of the p-V diagram was proposed based on the key feature points on the piston rod load curve that reflect the opening and closing events of the compressor valves.The reconstruction method was validated by comparing the calculated p-V diagrams with the experimental results.The reconstructed p-V diagrams were further used for fault diagnosis of the reciprocating compressors,with which the acoustic emission method was integrated.The results show that this method can easily monitor the working conditions and identify whether and where leakage,fluttering and delayed closing of the valves occur,which indicates that this method can be utilized as a powerful tool of non-destructive condition monitoring and fault diagnosis of the reciprocating compressors.
机译:作为已建立的方法来分析气缸内的热力学过程,PV图可以识别典型故障例如通过密封环和泄漏自作用阀,松动和瓦莱斯的飞舞,etc.However,压力传感器的安装缸用于记录PV图可以通过测量活塞杆应变导致气缸完整性的退化,并在此潜在的泄漏和cylinder.This提出一种往复式压缩机的故障诊断新的非破坏性方法的强度降低内,从该PV图是transformed.An算法用于PV图的重建是基于反映压缩机valves.The重建方法的打开和关闭事件的活塞杆负荷曲线上的关键特征点提出的,通过比较验证与实验results.The重构PV示所计算出的PV图进一步用于故障诊断的往复式压缩机,利用该声发射方法integrated.The结果表明,该方法可以很容易地监视工作条件和识别泄漏,飞舞和延迟关闭阀的是否以及在何处发生,这表明可以利用该方法的作为非破坏性条件监测和往复式压缩机的故障诊断的有力工具。

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