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USE OF THE INTEGRATED FLEXPIN BEARING FOR IMPROVING THE PERFORMANCE OF EPICYCLICAL GEAR SYSTEMS

机译:集成的Flexpin轴承用于提高行星齿轮系统的性能

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Epicyclical gear systems have typically been equipped with straddle-mounted planetary idlers having pins supported on the input and output sides of the carrier. Torsional wind-up of the carrier, position accuracy of the pins, machining tolerances of the planetary gear system components and bearings clearances can all contribute to a poor load sharing among the planetary idlers as well as misaligned gear contacts in the deflected state. Use of. the double-cantilevered flexible pin concept to achieve better load sharing and gear contact patterns among a multiplicity of planetary idlers, has been used to improve reliability in advanced gear drives for many years. The consequence of this practice is to build a compliant epicyclical system that improves power density in the gear length direction because the probability of achieving a properly centered gear contact is increased. The Integrated Flexpin Bearing, the subject of this paper, is capable of achieving additional power density in the gear diameter direction through integration of bearing components, gearing and shafting. This paper presents one designer's approach to optimizing an Integrated Flexpin Bearing to improve the reliability of an epicyclical gearbox.
机译:延伸齿轮系统通常已经配备有跨越的行星惰轮,其具有支撑在载体的输入和输出侧上的销。载体的扭转卷绕,销的定位精度,行星齿轮系统部件和轴承间隙的加工公差都可以有助于行星惰轮之间的衡量不良,以及偏转状态中的未对准齿轮触点。用于。双悬臂式柔性引脚概念,以实现更好的行星惰轮之间的更好的负载分配和齿轮接触模式,已被用来提高高级齿轮驱动器的可靠性多年。这种做法的结果是建立一种柔顺的行星系统,该系统可以提高齿轮长度方向上的功率密度,因为实现了适当居中的齿轮接触的可能性。通过轴承部件,齿轮和轴系整合,集成的Flexpin轴承能够在齿轮直径方向上实现额外的功率密度。本文介绍了一个设计师的方法,可以优化集成的Flexpin轴承,以提高行星齿轮箱的可靠性。

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