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ANALYSIS OF PERICYCLIC MECHANICAL TRANSMISSION WITH STRAIGHT BEVEL GEARS

机译:直齿轮传动装置的周向机械传动分析

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A design methodology for a Pericyclic mechanical transmission utilizing straight bevel gears has been presented. By virtue of its very high reduction ratio in a single meshing stage, the pericyclic transmission holds promise for significant transmission weight reduction compared to state-of-the-art concepts. Assembly, gear geometry and kinematics of the drivetrain leading to a high reduction ratio while having a very high contact ratio (~8-10 teeth in contact) has been discussed. Tooth contact behavior has been studied in detail. A load distribution model has been developed that can be easily generalized to any internal-external bevel gear mesh. A rolling/ sliding velocity analysis has also been carried out, taking nutational motion into account. This is further used to determine the elastohydrodynamic lubrication characteristics of the meshing gear pairs. The methodology was applied to a conceptual design, resulting in acceptable levels of predicted contact stress and transmission efficiency.
机译:提出了一种利用直齿锥齿轮的周向机械传动的设计方法。凭借其在单个啮合阶段中非常高的减速比,与最新概念相比,周轮传动有望大大降低传动装置的重量。讨论了传动系统的装配,齿轮几何形状和运动学特性,以实现高减速比,同时又具有很高的接触比(接触时约为8-10个齿)。已经详细研究了牙齿接触行为。已经开发了一种载荷分布模型,可以轻松地将其推广到任何内外锥齿轮啮合。还考虑了章动运动,进行了滚动/滑动速度分析。这进一步用于确定啮合齿轮对的弹性流体动力润滑特性。将该方法应用于概念设计,从而获得可接受水平的预计接触应力和传输效率。

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