首页> 外文会议>2011 9th International Conference on Reliability, Maintainability and Safety : Safety First, Reliability Primary >Hydrodynamic load carrying capacity analysis of planet gear thrust washer used in high-speed planetary transmission
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Hydrodynamic load carrying capacity analysis of planet gear thrust washer used in high-speed planetary transmission

机译:高速行星传动中行星齿轮止推垫圈的动水承载能力分析

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摘要

Aimed at washer in planetary transmission, the wear problem of thrust washer and planet gear due to the force in axis direction was investigated. In order to reduce wear, hydrodynamic lubrication design was studied by way of machining rectangular groove in radial direction into one side of thrust washer. The purpose of hydrodynamic lubrication design is that the relative movement between planet gear and thrust washer results into hydrodynamic pressure, which can separate the contact surface and reduce the wear accordingly. Rectangular groove was chosen to study because of its symmetrical structure, capability to rotate in two directions and easy method. The finite difference method was used to calculate the structural parameter of thrust washer for optimal carrying capacity design. The results show that when the ratio of groove angle to periodic groove angle is about 0.5, the carrying capacity is the best; when the number of grooves is in a range of 20 to 45, the carrying capacity is better; The wider the radial width of washer is, the higher the carrying capacity is. Focus on the less number of grooves in a range of 2 to 12, the carrying capacity analysis was made for guiding engineering practice.
机译:针对行星传动中的垫圈,研究了轴向力对推力垫圈和行星齿轮的磨损问题。为了减少磨损,通过在径向上将矩形槽加工到止推垫圈的一侧来研究流体动力润滑设计。流体动力润滑设计的目的是,行星齿轮和止推垫圈之间的相对运动会产生流体动力压力,从而可以分离接触表面并相应地减少磨损。选择矩形凹槽是因为其对称的结构,在两个方向上旋转的能力以及简便的方法来进行研究。采用有限差分法计算推力垫圈的结构参数,以达到最佳承载能力的设计。结果表明,当槽角与周期槽角之比约为0.5时,承载能力最好;当槽角与周期槽角之比为0.5时,承载能力最好。当凹槽的数量在20至45个范围内时,承载能力更好。垫圈的径向宽度越宽,承载能力越高。着眼于较少的2至12范围内的凹槽,进行了承载能力分析,以指导工程实践。

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