Self-locking and Efficiency Maximization Design of a 3K-H Planetary Gear Train

Planetary gear train is mainly used for power transmission, so it is of great significance to study its self-locking and efficiency. In this study, the self-locking analysis and efficiency maximization design of a 3K-H planetary gear train are carried out. Firstly, the efficiency of the positive and...

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Main Authors: Huang Junpeng, Kong Jianyi, Sun Wei, Xing Xing'ao, Li Baoyi
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2023-01-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2023.05.006
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author Huang Junpeng
Kong Jianyi
Sun Wei
Xing Xing'ao
Li Baoyi
author_facet Huang Junpeng
Kong Jianyi
Sun Wei
Xing Xing'ao
Li Baoyi
author_sort Huang Junpeng
collection DOAJ
description Planetary gear train is mainly used for power transmission, so it is of great significance to study its self-locking and efficiency. In this study, the self-locking analysis and efficiency maximization design of a 3K-H planetary gear train are carried out. Firstly, the efficiency of the positive and negative mechanism of the gear train is calculated using the transmission ratio method. Then, a unified formula for the efficiency of the planetary gear train is summarized. Furthermore, the efficiency curve is drawn by Matlab. Next, the trend of efficiency change of the planetary gear train and the conditions for realizing self-locking are analyzed. Finally, how to maximize the efficiency of the opposite mechanism under the condition of self-locking is studied.
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spelling doaj.art-2cf950e985f142468e760cc174ef6e052023-08-14T10:02:04ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392023-01-0147323738199879Self-locking and Efficiency Maximization Design of a 3K-H Planetary Gear TrainHuang JunpengKong JianyiSun WeiXing Xing'aoLi BaoyiPlanetary gear train is mainly used for power transmission, so it is of great significance to study its self-locking and efficiency. In this study, the self-locking analysis and efficiency maximization design of a 3K-H planetary gear train are carried out. Firstly, the efficiency of the positive and negative mechanism of the gear train is calculated using the transmission ratio method. Then, a unified formula for the efficiency of the planetary gear train is summarized. Furthermore, the efficiency curve is drawn by Matlab. Next, the trend of efficiency change of the planetary gear train and the conditions for realizing self-locking are analyzed. Finally, how to maximize the efficiency of the opposite mechanism under the condition of self-locking is studied.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2023.05.0063K-H;Planetary gear train;Transmission ratio method;Efficiency;Self-locking
spellingShingle Huang Junpeng
Kong Jianyi
Sun Wei
Xing Xing'ao
Li Baoyi
Self-locking and Efficiency Maximization Design of a 3K-H Planetary Gear Train
Jixie chuandong
3K-H;Planetary gear train;Transmission ratio method;Efficiency;Self-locking
title Self-locking and Efficiency Maximization Design of a 3K-H Planetary Gear Train
title_full Self-locking and Efficiency Maximization Design of a 3K-H Planetary Gear Train
title_fullStr Self-locking and Efficiency Maximization Design of a 3K-H Planetary Gear Train
title_full_unstemmed Self-locking and Efficiency Maximization Design of a 3K-H Planetary Gear Train
title_short Self-locking and Efficiency Maximization Design of a 3K-H Planetary Gear Train
title_sort self locking and efficiency maximization design of a 3k h planetary gear train
topic 3K-H;Planetary gear train;Transmission ratio method;Efficiency;Self-locking
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2023.05.006
work_keys_str_mv AT huangjunpeng selflockingandefficiencymaximizationdesignofa3khplanetarygeartrain
AT kongjianyi selflockingandefficiencymaximizationdesignofa3khplanetarygeartrain
AT sunwei selflockingandefficiencymaximizationdesignofa3khplanetarygeartrain
AT xingxingao selflockingandefficiencymaximizationdesignofa3khplanetarygeartrain
AT libaoyi selflockingandefficiencymaximizationdesignofa3khplanetarygeartrain