The Kinematic Design of 2K Type Planetary Gear Reducers with High Reduction Ratio

Long-Chang Hsieh, H. Tang, Tzu-Hsia Chen, J. H. Gao
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引用次数: 3

Abstract

3K type and 2K-2H type planetary gear trains can be designed to have high reduction ratios. Due to the reason of power circulation, these two kinds of planetary gear trains with high reduction ratios have low meshing efficiencies. The 2K type planetary gear reducer only contain two ring gears and one carrier, hence it will not have the problem of power circulation and will have better meshing efficiency than 3K type and 2K-2H type planetary gear reducers. Also, in general, the gear reducers with high reduction ratio are compound gear system. The purpose of this paper is to propose 2K type planetary simple gear reducers with high reduction ratios. Based on the concept of train value equation, the kinematic design of 2K type planetary gear trains with high reduction ratio are synthesized. Six 2K type planetary gear reducers are designed to illustrate the kinematic design process. Three of the examples are 2K type planetary gear reducers with simple planet gears. For the 2K type planetary simple gear reducer, there is a problem that is the simple planet gear engages to two ring gears with different tooth number. One example is used to illustrate how to design the two ring gears with different shift coefficient to engage the same planet gear. Based on the proposed process, all 2K type planetary simple gear reducers with high reduction ratios can be synthesized.
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2K型高减速比行星齿轮减速器的运动学设计
3K型和2K-2H型行星轮系可以设计成具有高减速比。由于动力循环的原因,这两种高减速比的行星轮系的啮合效率较低。2K型行星齿轮减速器只包含两个环齿轮和一个载体,因此不会有动力循环问题,并且比3K型和2K- 2h型行星齿轮减速器具有更好的啮合效率。另外,一般来说,具有高减速比的齿轮减速器是复合齿轮系统。本文的目的是提出2K型高减速比行星简单齿轮减速器。基于系值方程的概念,综合了2K型高减速比行星轮系的运动设计。设计了6个2K型行星齿轮减速器来说明其运动学设计过程。其中三个例子是2K型行星齿轮减速器与简单的行星齿轮。对于2K型行星简单齿轮减速器,存在简单行星齿轮与两个不同齿数的环齿轮啮合的问题。通过一个实例说明了如何设计两个换档系数不同的环形齿轮啮合同一行星齿轮。基于所提出的工艺,可以合成所有2K型高减速比行星简单齿轮减速器。
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