Lost Motion Analysis of Micro-segment 3K-I Planetary Gear

Aiming at the difficult about lost motion calculation of micro-segment planetary gear transmission accuracy. Considering the influence of gear natural error, assembly error and the time-varying mesh stiffness of gears, the lost motion model of planetary gear transmission is proposed based on the bac...

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Main Authors: Kang Huang, Lingkun Zhu, Meng Sang, Qining Wang
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2019-01-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2019.03.006
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author Kang Huang
Lingkun Zhu
Meng Sang
Qining Wang
author_facet Kang Huang
Lingkun Zhu
Meng Sang
Qining Wang
author_sort Kang Huang
collection DOAJ
description Aiming at the difficult about lost motion calculation of micro-segment planetary gear transmission accuracy. Considering the influence of gear natural error, assembly error and the time-varying mesh stiffness of gears, the lost motion model of planetary gear transmission is proposed based on the backlash of micro-segment gear. Aiming at 3K-I planetary gear train, the theoretical calculation lost motion of micro-segment gear is 5.92% smaller than involute gear by Monte Carlo simulation. Experiment under the same conditions shows that the lost motion of micro-segment planetary gear is within the theoretical model calculation and the lost motion of micro-segment planetary gear is 6.25% smaller than involute gear, which proves that the lost motion model of micro-segment planetary gear is correct.
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spelling doaj.art-ddff81b75c3c45edbfc71429764e26bd2023-05-26T09:53:05ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392019-01-0143283430640533Lost Motion Analysis of Micro-segment 3K-I Planetary GearKang HuangLingkun ZhuMeng SangQining WangAiming at the difficult about lost motion calculation of micro-segment planetary gear transmission accuracy. Considering the influence of gear natural error, assembly error and the time-varying mesh stiffness of gears, the lost motion model of planetary gear transmission is proposed based on the backlash of micro-segment gear. Aiming at 3K-I planetary gear train, the theoretical calculation lost motion of micro-segment gear is 5.92% smaller than involute gear by Monte Carlo simulation. Experiment under the same conditions shows that the lost motion of micro-segment planetary gear is within the theoretical model calculation and the lost motion of micro-segment planetary gear is 6.25% smaller than involute gear, which proves that the lost motion model of micro-segment planetary gear is correct.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2019.03.006Micro-segment gear;Transmission accuracy;Lost motion;Meshing stiffness;Monte Carlo
spellingShingle Kang Huang
Lingkun Zhu
Meng Sang
Qining Wang
Lost Motion Analysis of Micro-segment 3K-I Planetary Gear
Jixie chuandong
Micro-segment gear;Transmission accuracy;Lost motion;Meshing stiffness;Monte Carlo
title Lost Motion Analysis of Micro-segment 3K-I Planetary Gear
title_full Lost Motion Analysis of Micro-segment 3K-I Planetary Gear
title_fullStr Lost Motion Analysis of Micro-segment 3K-I Planetary Gear
title_full_unstemmed Lost Motion Analysis of Micro-segment 3K-I Planetary Gear
title_short Lost Motion Analysis of Micro-segment 3K-I Planetary Gear
title_sort lost motion analysis of micro segment 3k i planetary gear
topic Micro-segment gear;Transmission accuracy;Lost motion;Meshing stiffness;Monte Carlo
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2019.03.006
work_keys_str_mv AT kanghuang lostmotionanalysisofmicrosegment3kiplanetarygear
AT lingkunzhu lostmotionanalysisofmicrosegment3kiplanetarygear
AT mengsang lostmotionanalysisofmicrosegment3kiplanetarygear
AT qiningwang lostmotionanalysisofmicrosegment3kiplanetarygear