Structure Design and Experimental Study of Pin-Cycloidal Planetary Reducer for the Pitch of High-Power Wind Turbine

CONVERTER Pub Date : 2021-07-10 DOI:10.17762/converter.111
L. Qi, He Weidong
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Abstract

In recent years, with the development of manufacturing technology and production capacity, wind power industry has been developed rapidly.A new type of pin-cycloidal planetary reducer was proposed in this studyfor the actuator of the pitch of high-power wind turbines. Based on the transformation mechanism method, the transmission efficiency of the reducer was calculated by analyzing the pin-cycloidal meshing efficiency, bearing efficiency, and output mechanism efficiency. Prototype testing were combined to systematically and deeply study the design theory of the reducer for the pitch of high-power wind turbines. Finally, a new design was proposed for a reliable two-stage pin-cycloidal planetary reducer with a strong bearing capacity and multi-tooth meshing on the hard gear surface that can be applied to the pitch system of high-power wind turbines.
大功率风力发电机桨距针摆线行星减速器结构设计与实验研究
近年来,随着制造技术和生产能力的发展,风电产业得到了迅速发展。提出了一种新型的针摆线行星减速器,用于大功率风力发电机桨距作动器。基于转换机构法,通过分析针针摆线啮合效率、轴承效率和输出机构效率,计算了减速器的传动效率。结合样机试验,系统深入地研究了大功率风力发电机节距减速器的设计理论。最后,提出了一种可靠的、承载能力强、硬齿面多齿啮合的两级针摆线行星减速器的新设计方案,可应用于大功率风力发电机的节距系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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