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Vibration modulation sidebands mechanisms of equally-spaced planetary gear train with a floating sun gear

机译:浮动太阳轮等距行星齿轮系的振动调制边带机制

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The sun gear of planetary gear train is generally designed to float in the radial direction to achieve the uniform load distribution among different planet gears, but brings periodic gear mesh errors to generate more complicated vibration signals. There lack effective feature indicators for fault diagnosis at present. On the basis of researches on signal transfer path functions and measuring-direction projection functions of the gear mesh force, a set of vibration signal models are built to represent the modulation sidebands induced by a single planet gear mesh. Taking phase differences among equally-spaced planet gears into consideration, vibration modulation sidebands generating from meshes of multiple planet gears are further studied. The mechanisms of sidebands are obtained, especially the influences of floating sun gear on some specific frequency components. Vibration signals of a single stage planetary gear train and a wind turbine planetary gearbox show good frequency consistencies with the model-based signal. The comparison analyses effectively verify the correctness of the proposed model. An important feature indicator is obtained to distinguish whether the planetary gear train is assembled with a floating sun gear, or whether the planetary gear train without a floating sun gear exists some distributed defects. (C) 2019 Elsevier Ltd. All rights reserved.
机译:行星齿轮系的太阳轮通常设计为在径向方向上浮动,以实现不同行星齿轮之间的均匀负载分配,但会带来周期性的齿轮啮合误差,从而产生更复杂的振动信号。当前,缺乏用于故障诊断的有效特征指标。在对齿轮啮合力的信号传递路径函数和测量方向投影函数进行研究的基础上,建立了一套振动信号模型来表示单个行星齿轮啮合引起的调制边带。考虑到等距行星齿轮之间的相位差,进一步研究了由多个行星齿轮的啮合产生的振动调制边带。获得了边带的机制,尤其是浮动太阳轮对某些特定频率分量的影响。单级行星齿轮系和风力涡轮机行星齿轮箱的振动信号与基于模型的信号显示出良好的频率一致性。比较分析有效地验证了所提出模型的正确性。获得了重要的特征指示器以区分行星齿轮系是否与浮动太阳齿轮组装在一起,或者没有浮动太阳齿轮的行星齿轮系是否存在一些分布式缺陷。 (C)2019 Elsevier Ltd.保留所有权利。

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