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CYCLOIDAL GEARTRAIN IN-USE EFFICIENCY STUDY

机译:系环形齿轮使用效率研究

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摘要

Currently, harmonic drives are the primary speed reducer for robotic applications where a high reduction in a small package is required. Cycloidal drives are an alternative option for high reduction, small package, use-cases with the advantage of a higher specific torque and the ability to customize and integrate the drive for the application. These compact style cycloidal drives have been well studied in theory and simulation for their performance, but very little data is available on their actual performance over time. This paper presents experimental data on performance of a cycloidal drive designed for a Lunar or Martian rover application. Burn-in time efficiency curves and torque/speed efficiency profiles are computed after running the drive through 129k output cycles (7.6M input cycles) over the course of 300+ hours of testing. The study finds that substantial burn-in time may be required for steady-state performance, but peak efficiencies of 81% can be achieved. Also, the efficiency is shown to be dependent on the torque through the actuator. This work demonstrates a customized cycloidal drive in a space application that is comparable to a harmonic drive in efficiency performance, with a 2× increase in specific torque, suggesting the application of cycloidal drives could grow tremendously in robotic designs.
机译:目前,谐波驱动器是用于机器人应用的主要速度减速器,其中需要小包装的高减少。摆线驱动器是高减速,小包装,用例的替代选择,具有更高的特定扭矩的优点,以及为应用程序定制和集成驱动器的能力。这些紧凑型风格的循环驱动器在理论上进行了很好地研究和模拟它们的性能,但很少的数据可以随着时间的推移而获得实际性能。本文介绍了有关为月球或火星罗孚申请设计的摆线驱动的实验数据。在经过300多小时的测试过程中运行129K输出周期(7.6M输入周期)后,计算燃烧时间效率曲线和扭矩/速度效率曲线。该研究发现,稳态性能可能需要大量燃烧时间,但可以实现81%的峰值效率。而且,效率被示出为通过致动器取决于扭矩。这项工作在空间应用中展示了一种定制的摆线驱动,其与效率性能的谐波驱动相当,特定扭矩增加2倍,表明摆线驱动器的应用可能在机器人设计中产生巨大的生长。

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