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首页> 外文期刊>Transactions of Tianjin University >Design and Dynamics Simulation of a Novel Double-Ring-Plate Gear Reducer
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Design and Dynamics Simulation of a Novel Double-Ring-Plate Gear Reducer

机译:新型双环齿轮减速器的设计与动力学仿真

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摘要

A patented double-ring-plate gear reducer was designed and its dynamic performance was simulated. One unique characteristic of this novel drive is that the phase angle difference between two parallelogram mechanisms is a little less than 180 degree and four counterweights on two crankshafts are designed to balance inertia forces and inertia moments of the mechanisms. Its operating principle, advantages, and design issues were discussed. An elasto-dynamics model was presented to acquire its dynamic response by considering the elastic deformations of ring-plates, gears, bearings, etc. The simulation results reveal that compared with housing bearings, planetary bearings work in more severe conditions. The fluctuation of loads on gears and bearings indicates that the main reason for reducer vibration is elastic deformations of the system rather than inertia forces and inertia moments of the mechanisms.
机译:设计了获得专利的双环板齿轮减速器,并对其动态性能进行了仿真。这种新颖的驱动器的一个独特特性是,两个平行四边形机构之间的相角差略小于180度,并且两个曲轴上的四个配重被设计为平衡机构的惯性力和惯性矩。讨论了其工作原理,优点和设计问题。提出了一种弹性动力学模型,通过考虑环板,齿轮,轴承等的弹性变形来获取其动态响应。仿真结果表明,与轴承座轴承相比,行星轴承在更苛刻的条件下工作。齿轮和轴承上载荷的波动表明,减速器振动的主要原因是系统的弹性变形,而不是机构的惯性力和惯性矩。

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