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EXPERIMENTS AND ANALYSIS OF VIBRATION SIGNALS FROM A FAILED COMPONENT IN A HELICOPTER GEARBOX

机译:直升机齿轮箱中失效组件的振动信号的实验与分析

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This paper investigates and analyses a failed component in a helicopter gearbox after metal flaking triggered a chip detector warning. Examination of the gearbox revealed spalling in one of the rollers of a cylindrical roller bearing. In-flight data was acquired and a pool of techniques has been suggested in this paper for detecting bearing faults. They are envelope demodulation, cepstrum analysis and statistical methods such as zero order figure of merit (FM0), spectral entropy (SE) and energy in the enveloped spectrum. Systematic failure analysis was carried out, using in-flight data and also data collected from a test rig under controlled laboratory conditions, i.e., a helicopter gearbox fitted with the same defective bearing. The gearbox was run at different speed and load conditions. Multiple vibration accelerometers were mounted on the bearing housing in the axial and radial directions to capture vibration signals for maximum signal coverage. Analysis of in-flight signals is a complex one as there are a number of shaft rotational frequencies as well as gear mesh frequencies (GMF) and their harmonics and these signals can easily mask bearing fault frequencies. The methods suggested above attempt to address this problem and the results are promising.
机译:本文研究和分析后金属直升机齿轮箱发生故障的组件剥落触发的芯片检测器的警告。齿轮箱的检查发现在圆柱滚子轴承的辊中的一个剥落。飞行数据被获取和的技术的池已在本文中被建议用于检测轴承故障。它们是包络线检波,对数倒频谱分析和统计方法的优点,如零级图(FM0),频谱熵(SE)和能量在包膜光谱。系统的故障分析进行,使用飞行数据,并且还控制的实验室条件下从一个试验台收集的数据,即,直升机齿轮箱装配有相同的缺陷轴承。齿轮箱在不同速度和负载条件下运行。多个振动加速度计被安装在轴向和径向方向上的轴承壳体上以捕获振动信号为最大的信号覆盖。在飞行中信号的分析是复杂的,因为有许多轴旋转频率的以及齿轮啮合频率(GMF)及其谐波,并且这些信号可以很容易地掩蔽轴承故障频率。上述方法试图解决这个问题,建议和结果是有希望的。

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