A Study on the Synthesis of 2D Profiles for Cycloidal Discs Used in Cycloidal Reducers

M. Horodinca, Eduard Neculai Bumbu, Adrian D. Munteanu, D. Chitariu, Florin Chifan
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引用次数: 1

Abstract

Abstract This paper proposes a simple approach on the synthesis of the 2D profiles for the rotors of cycloidal reducers. A 2D rotor (or cycloidal disc) profile (as a complex closed curve) can be defined (as an alternative to the strictly mathematical definition) as the internal bordered envelope of the family of 2D profiles of the stator (or ring gear) obtained with the stator movable (for at least a completely rotation) around the fixed rotor (or planetary gear) by respecting the gearing conditions inside a cycloidal reducer. The more 2D profiles of the stator are used the more accurate definition of 2D rotor profile is obtained. The finding of x, and y-coordinates of the points involved in the description of this 2D rotor profile is by far the most complicated problem to solve in the manufacturing of this type of reducer, the behavior and performances of the cycloidal reducer drastically depends by the accuracy of this profile. The results of this study can be easy applied in practice.
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摆线减速器用摆线盘二维轮廓的合成研究
提出了一种简单的摆线针轮减速器转子二维轮廓线合成方法。一个二维转子(或摆线盘)轮廓(作为一个复杂的封闭曲线)可以被定义(作为严格的数学定义的替代方案)为通过尊重摆线针轮减速器内部的传动条件,在固定转子(或行星齿轮)周围的定子(或环齿轮)可移动(至少完全旋转)时获得的定子(或环齿轮)二维轮廓系列的内部边界包络。定子二维轮廓线的使用越多,转子二维轮廓线的定义就越精确。在这种二维转子廓形的描述中所涉及的点的x和y坐标的寻找是迄今为止在这种类型的减速器制造中要解决的最复杂的问题,摆线针轮减速器的行为和性能在很大程度上取决于这种廓形的精度。研究结果易于应用于实际。
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