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Modeling and Simulation of the Nutation Drive with Movable Taper Teeth

机译:可移动锥形齿的努力驱动的建模与仿真

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摘要

Background: The nutation drive is being extensively interested due to its ability to achieve ahigh reduction ratio with a compact structure and the potential for low vibration, high efficiency anddesign flexibility, while many problems including the difficulty to process the inner bevel gear and lessnumber of teeth in engagement have restricted the development of it.Objective: The purpose of this paper was to propose and analyze a patent about a new nutation drivewith movable taper teeth, in which rolling substitutes tooth meshing, the bevel gear processing difficultiesand other issues can be avoided.Methods: Based on geometry transformation and the meshing theory, the meshing surface and mathematicalequations of the tooth profiles for both the stator and the rotor were developed, enabling thepressure angle to be analyzed in detail.Results: These mathematical models were then verified by kinematics simulation and interference detectionin a virtual simulation environment. Further, the verification of the working process of the nutationdrive showed that all the simulation values were approximate to the desired value of the designednutation drive.Conclusion: The study proposed an approach for generating stator and rotor in the nutation drive toprovide superior performance in terms of load sharing and contact intensity. Simulation and manufacturingtechnology of the mechanism were carried out to prove the theoretical equations. The prototypeof it has been illustrated to verify the theory and the computer simulation model at the end of this paper.
机译:背景:由于其能够实现具有紧凑结构和低振动的潜力,高效率和设计灵活性的能力广泛感兴趣,但许多问题包括处理内锥齿轮的难度和牙齿的较少的问题在订婚时限制了它的发展。目的:本文的目的是提出并分析了一个关于可移动锥形齿的新努力驱动的专利,其中滚动替换齿啮合,锥齿轮处理困难,可以避免其他问题。方法:基于几何变换和啮合理论,开发了定子和转子齿廓的啮合表面和数学等,使得能够详细分析压迫角。然后通过运动学模拟验证这些数学模型。和干扰检测虚拟仿真环境。此外,QuationDrive的工作过程的验证表明,所有模拟值均近似于设计的所需值。结论:该研究提出了一种用于在螺母驱动器顶部的螺母驱动器中产生定子和转子的方法负载共享和联系强度。进行了机制的模拟和制造技术,以证明理论方程。已经说明了原型,以验证本文末尾的理论和计算机仿真模型。

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