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Effects of variable loading conditions on the dynamic behaviour of planetary gear with power recirculation

机译:可变负载条件对动力再循环行星齿轮动力特性的影响

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摘要

Variable loads to which gearboxes are subjected are considered as one of the main sources of non-stationarity in these transmissions. In order to characterise their dynamic behaviour in such conditions, a torsional lumped parameter model of a planetary gear with power recirculation was developed. The model included time varying loading conditions and took into account the non-linearity of contact between teeth. The meshing stiffness functions were modelled using Finite Element Method and Hertzian contact theory in these conditions. Series of numerical simulations was conducted in stationary conditions, with different loading conditions. Equation of motion was solved using Newmark algorithm. Numerical results agreed with experimental results obtained from a planetary gear test bench. This test bench is composed of two similar planetary gears called test planetary gear set and reaction planetary gear set which are mounted back-to-back so that the power recirculates through the transmission. The external load was applied through an arm attached to the free reaction ring. Data Acquisition System acquired signals from accelerometers mounted on the rings and tachometer which measured instantaneous angular velocity of the carrier's shaft. The signal processing was achieved using LMS Test.Lab software. Modulation sidebands were obtained from the ring acceleration measurements as well as a non-linear behaviour in case of variable loading resulted by a transfer of the spectral density from the fundamental mesh stiffness to its second harmonic. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这些变速器中,变速箱所承受的可变载荷被认为是非平稳性的主要来源之一。为了表征它们在这种条件下的动态行为,建立了具有动力再循环的行星齿轮的扭转集总参数模型。该模型包括随时间变化的加载条件,并考虑了牙齿之间接触的非线性。在这些条件下,使用有限元方法和赫兹接触理论对啮合刚度函数进行建模。在固定条件下,不同载荷条件下进行了一系列数值模拟。使用Newmark算法求解运动方程。数值结果与从行星齿轮试验台获得的实验结果一致。该试验台由两个相似的行星齿轮组成,分别称为“测试行星齿轮组”和“反作用行星齿轮组”,它们背对背安装,从而使动力通过变速箱再循环。通过连接到自由反应环上的臂施加外部负载。数据采集​​系统从安装在吊环和转速表上的加速度计获取信号,该加速度计测量了托架轴的瞬时角速度。使用LMS Test.Lab软件可以实现信号处理。从振铃加速度测量结果获得调制边带,以及由于频谱密度从基本网格刚度转移到其二次谐波而导致可变负载的情况下的非线性行为。 (C)2016 Elsevier Ltd.保留所有权利。

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