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A PLANETARY GEAR TRAIN WITH RING-INVOLUTE TOOTH

机译:带有齿圈渐开线齿的行星齿轮火车

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摘要

This paper proposes a planetary gear train with ring-involute tooth profile. Inherent in a planetary gear train is the conjugate problem among the sun, the planet gears and the ring gear. The sun gear and the planet gear can be obtained by applying the envelope method to a one-parameter family of a conical tooth surface. The conical tooth rack cutter was presented in a previous paper [5]. The obtained planet gear then becomes the generating surface. The double envelope method can be used to obtain the envelope to the family of generating surfaces. Subsequently the profile of a ring gear of the planetary gear trains can be easily obtained, and using the generated planet gear and applying the gear theory, the ring gear is generated. To illustrate, the planetary gear train with a gear ratio of 24:10:7 is presented. Using rapid prototyping and manufacturing technology, a sun gear, four planet gears, and a ring gear are designed. The RP primitives provide an actual full-size physical model that can be analyzed and used for further development. Results from these mathematical models are applicable to the design of a planetary gear train.
机译:本文提出了一种具有渐开线齿形的行星齿轮系。行星齿轮系中固有的是太阳,行星齿轮和齿圈之间的共轭问题。太阳齿轮和行星齿轮可以通过将包络线方法应用于圆锥形齿面的一参数族来获得。锥形齿条切割机在以前的论文中已有介绍[5]。然后,所获得的行星齿轮成为发电表面。双重包络法可用于获得包络到生成表面族。随后,可以容易地获得行星齿轮系的齿圈的轮廓,并且使用产生的行星齿轮并应用齿轮理论,产生了齿圈。为了说明,提出了具有24:10:7的传动比的行星齿轮系。使用快速原型制作和制造技术,设计了太阳齿轮,四个行星齿轮和环形齿轮。 RP原语提供了实际的全尺寸物理模型,可以对其进行分析并将其用于进一步的开发。这些数学模型的结果适用于行星齿轮系的设计。

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