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Defining acoustic emission-based condition monitoring indicators for monitoring piston rod seal and bearing wear in hydraulic cylinders

机译:定义基于声发射的状态监测指示器,用于监控活塞杆密封和液压缸内轴承磨损

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摘要

Fluid leakage from hydraulic cylinders is a major concern for the offshore industries as it directly affects hydraulic cylinder energy efficiency and causes environmental contamination. There have been attempts made in literature to develop robust condition monitoring techniques for hydraulic cylinders. However, most of these studies were performed to identify degradation of single components. Therefore, in this study, the aim is to monitor degradation of multiple components simultaneously in hydraulic cylinders using acoustic emissions. Experiments performed consist of three test phases and were performed using a hydraulic test rig. In the first test phase, the study is performed to identify acoustic emission features that can be used to monitor piston rod seal wear. In the second test phase, acoustic emission features are identified that can be used to understand bearing wear when unworn, semi-worn or worn piston rod seals are used in hydraulic test rig. In the third test phase, a run-to-failure test is conducted to identify acoustic emission features that can indicate fluid leakage initiation due to piston rod seal wear. The median frequency feature showed good repeatability in all the three test phases to identify piston rod seal wear, bearing wear and fluid leakage initiation during the initial stages in the hydraulic test rig. The proposed acoustic emission-based condition monitoring technique is robust and can be used for the hydraulic cylinders in the industries, as it identifies acoustic emission features based on particular frequency bands associated to specific components, making it less susceptible to noise from other components.
机译:液压缸的液体泄漏是海上工业的一个主要问题,因为它直接影响液压缸的能源效率并造成环境污染。文献中曾尝试开发液压缸的可靠状态监测技术。然而,大多数研究都是为了确定单一组分的降解。因此,在本研究中,目的是使用声发射同时监测液压缸中多个部件的退化。进行的实验包括三个试验阶段,并使用液压试验台进行。在第一个试验阶段,进行研究以确定可用于监测活塞杆密封磨损的声发射特征。在第二个试验阶段,确定了当液压试验台中使用未磨损、半磨损或磨损的活塞杆密封时,可用于了解轴承磨损的声发射特征。在第三个测试阶段,进行了一次运行至故障测试,以识别可能表明由于活塞杆密封磨损导致液体泄漏的声发射特征。中值频率特征在所有三个试验阶段都显示出良好的重复性,以识别液压试验台初始阶段的活塞杆密封磨损、轴承磨损和流体泄漏。所提出的基于声发射的状态监测技术具有很强的鲁棒性,可用于工业中的液压缸,因为它根据与特定部件相关的特定频带识别声发射特征,使其不易受到其他部件噪声的影响。

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