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Dynamic characteristics of the planetary gear train excited by time-varying meshing stiffness in the wind turbine

机译:时变啮合刚度在风力涡轮机中激发的行星齿轮系的动态特性

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摘要

Wind power has attracted increasing attention as a renewable and clean energy. Gear fault frequently occurs under extreme environment and complex loads. The time-varying meshing stiffness is one of the main excitations. This study proposes a 5 degree-of-freedom torsional vibration model for the planetary gear system. The influence of some parameters (e.g., contact ratio and phase difference) is discussed under different conditions of a single teeth pair and double pairs of teeth. The impact load caused by the teeth face fault, ramped load induced by the complex wind conditions, and the harmonic excitation are investigated. The analysis of the time-varying meshing stiffness and the dynamic meshing force shows that the dynamic design under different loads can be made to avoid resonance, can provide the basis for the gear fault location of a wind turbine, and distinguish the fault characteristics from the vibration signals.
机译:风力发电引起了越来越多的可再生和清洁能源。 齿轮故障经常发生在极端环境和复杂负载下。 时变啮合刚度是主要激励之一。 本研究提出了行星齿轮系统的5自由度扭转振动模型。 在单齿对和双对齿的不同条件下讨论一些参数(例如,接触比和相位差)的影响。 由牙齿面部故障引起的冲击载荷,由复杂风条件引起的斜坡载荷,以及谐波激发。 时变啮合刚度和动态啮合力的分析表明,可以使不同载荷下的动态设计避免共振,可以为风力涡轮机的齿轮故障定位提供基础,并区分故障特征 振动信号。

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