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Investigation of Tapered Roller Bearing Damage Detection Using Oil Debris Analysis

机译:圆锥滚子轴承油污分析检测损伤的研究

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摘要

A diagnostic tool was developed for detecting fatigue damage to tapered roller bearings. Tapered roller bearings are used in helicopter transmissions and have potential for use in high bypass advanced gas turbine aircraft engines. This diagnostic tool was developed and evaluated experimentally by collecting oil debris data from failure progression tests performed by The Timken Company in their Tapered Roller Bearing Health Monitoring Test Rig. Failure progression tests were performed under simulated engine load conditions. Tests were performed on one healthy bearing and three predamaged bearings. During each test, data from an on-line, in-line, inductance type oil debris sensor was monitored and recorded for the occurrence of debris generated during failure of the bearing. The bearing was removed periodically for inspection throughout the failure progression tests. Results indicate the accumulated oil debris mass is a good predictor of damage on tapered roller bearings. The use of a fuzzy logic model to enable an easily interpreted diagnostic metric was proposed and demonstrated.
机译:开发了一种诊断工具来检测圆锥滚子轴承的疲劳损伤。圆锥滚子轴承用于直升机变速器,并有潜力用于高旁通先进燃气涡轮飞机发动机。通过从铁姆肯公司在其圆锥滚子轴承健康监测测试装置中进行的故障进展测试中收集油屑数据,开发并实验评估了该诊断工具。在模拟的发动机负载条件下进行了故障进展测试。对一个健康轴承和三个预损坏轴承进行了测试。在每个测试过程中,都会监视并记录来自在线,在线,电感型油屑传感器的数据,以了解轴承故障期间产生的屑的发生情况。定期移除轴承,以在整个故障进行测试中进行检查。结果表明,累积的油屑质量很好地预测了圆锥滚子轴承的损坏。提出并演示了使用模糊逻辑模型来实现易于解释的诊断指标。

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