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Design Space Exploration of Pericyclic Transmission with Counterbalance and Bearing Load Analysis

机译:具有平衡和轴承载荷分析的周向传动设计空间探索

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The pericyclic transmission provides the opportunity to vastly impact transmission design in rotorcraft due to its ability to provide exceedingly high reduction ratios in a single stage that would normally require multiple gear stages. This could lead to lighter transmissions with fewer components, increased reliability, efficiency, speed and decreased cost to maintain. While many previous studies have focused upon the gearing within the pericyclic transmission, this work focused on what influences pericyclic geometry, and how changes in geometry impact bearing loads. Specifically, the loading of bearings that must deliver power from the input shaft to the nutating and rotating gears of the system were of primary concern. A comprehensive look at dynamic loads generated by nutating bodies was performed. Methods to address these dynamic loads via application of counterbalances, and deviation from conventional pericyclic transmission designs were utilized to negate the dynamic moment of concern. Counterbalances negating the dynamic moment were shown to weigh between 30-50% of the pericyclic motion converter gears in a 40:1 reduction ratio pericyclic design at 12,000 rpm input speed and reduced applied moments by three orders of magnitude. Finally, a static solver was used to determine the bearing loads with updated component geometries and mass moment of inertias that included the required counterbalances.
机译:周转变速器由于能够在通常需要多个齿轮级的单级中提供极高的减速比,因此为旋翼航空器的变速箱设计提供了巨大影响的机会。这可以使传输更轻,部件更少,提高可靠性,效率,速度并降低维护成本。尽管许多先前的研究都集中在周转变速器的齿轮传动方面,但这项工作的重点是什么会影响周转几何形状,以及几何形状的变化如何影响轴承载荷。特别是,必须将动力从输入轴传递到系统的章动齿轮和旋转齿轮的轴承负载是首要考虑的问题。对由章动体产生的动态载荷进行了全面研究。通过利用平衡来解决这些动态负载的方法以及与常规周转变速箱设计的偏差可以消除动态力矩。在动比为40:1的周转设计中,在输入速度为12,000 rpm的情况下,抵消动态力矩的平衡重占周转运动变矩器齿轮的30-50%,并将施加的力矩降低了三个数量级。最后,使用静态求解器确定具有更新的零部件几何形状和质量惯性矩(包括所需的平衡)的轴承载荷。

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