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Wind turbine planetary gearbox health diagnostic using time-varying meshing stiffness

机译:使用时变啮合刚度的风力涡轮机行星齿轮箱健康诊断

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In wind turbine planetary gearbox, the ability to identify ring-planet-sun gears meshing stiffness from the real data of vibration responses makes it possible to determine the physical existed planet gear defects which are used for severity assessments. There are limitations for vibration based gear diagnostic methods. Vibrations are secondary effects in the sense that they are dynamic responses of a gearbox excited by meshing stiffness and other excitations. The aim of this work is to diagnose the level of defects (gear tooth crack, gear tooth spalling and gear tooth breakage) in wind turbine gearbox using gears meshing stiffness. Time-varying meshing stiffness is used, where, a technique consists of a non-linear numerical optimisation is applied. The optimisation uses a dynamic model of the gears mesh and forms an estimate of both time-varying and frequency-varying mesh stiffness that best corresponds to the given set of vibration data. Multi-hour tests were conducted and recordings were acquired using translation vibration monitoring, where the optimum meshing stiffness was computed. The optimum meshing stiffness with the recording time was highlighted suggesting critical changes in the operation of the gearbox. The results indicate that if one tooth is defected due to cracks, spalling and breakage to reach the setting maximum level, the maintenance regime will be called despite a new damage is prone in the adjacent tooth to save time and cost.
机译:在风力涡轮机行星齿轮箱中,能够从真实的振动响应数据中识别出环形行星太阳齿轮啮合刚度,从而有可能确定用于严重性评估的物理存在的行星齿轮缺陷。基于振动的齿轮诊断方法存在局限性。振动是次级效应,从某种意义上说,它们是齿轮啮合刚度和其他激励所激发的变速箱的动态响应。这项工作的目的是使用齿轮啮合刚度来诊断风力涡轮机变速箱中的缺陷水平(齿轮齿裂纹,齿轮齿散裂和齿轮齿断裂)。使用时变啮合刚度,其中应用了一种由非线性数值优化组成的技术。优化使用齿轮啮合的动态模型,并形成时变和频变啮合刚度的估算值,该估算值最适合给定的一组振动数据。进行了数小时的测试,并使用平移振动监测获取了记录,并在其中计算了最佳啮合刚度。突出显示了随着记录时间的最佳啮合刚度,表明变速箱的运行发生了重大变化。结果表明,如果一颗牙齿由于裂痕,剥落和断裂而缺损,无法达到设定的最大水平,尽管相邻牙齿容易出现新的损坏,但仍将要求进行维护,以节省时间和成本。

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