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Consideration about Meshing of Worm Gear Based on MUB (Meshing Under Base-Circle) Theory for EPS

机译:基于EPS的MUB(基圆下啮合)理论的蜗轮啮合问题的思考。

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This paper will discuss the stress reduction of the worm wheel for an electric power steering (EPS) system. The research discussed in this paper focused on the worm wheel, the EPS component that determines the maximum diameter of the system. If the stress of the worm wheel could be reduced without increasing in size, it would be possible to reduce the size of the worm wheel and EPS system. In order to reduce the stress of the worm wheel, the conventional design method has extended the line-of-action toward outside of the worm wheel to increase the contact ratio of the gears and these method lead to an increase in the outer diameter. In order to address this issue, past research proposes the basic concept to extend line-of-action toward the inside of the worm wheel. And this new meshing theory was named MUB (Meshing Under Base-circle) theory. In this paper, characteristics of meshing of the gear formed by MUB theory are determined in more detail. After that, an example of design guideline of the worm gear profile based on MUB theory is explained. And this worm gear was manufactured, installed into an EPS system, and tested. This paper will report on the findings made during the course of this research.
机译:本文将讨论用于电动助力转向(EPS)系统的蜗轮的应力减小。本文讨论的研究集中在蜗轮上,蜗轮决定了系统的最大直径。如果可以减小蜗轮的应力而不增大尺寸,则可以减小蜗轮和EPS系统的尺寸。为了减小蜗轮的应力,传统的设计方法将作用线延伸到蜗轮的外部以增加齿轮的接触比,并且这些方法导致外径增大。为了解决这个问题,过去的研究提出了将作用线延伸到蜗轮内部的基本概念。这种新的网格划分理论被称为MUB(基圆下网格划分)理论。在本文中,将更详细地确定由MUB理论形成的齿轮的啮合特性。之后,以基于MUB理论的蜗轮齿廓设计指南为例进行说明。然后制造了这种蜗轮,安装到EPS系统中并进行了测试。本文将报告研究过程中的发现。

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