Study on the influence of working condition variation on lubrication characteristics of EHA internal pump

Abstract The operational characteristics of Electro-Hydraulic Actuator(EHA) result in the EHA internal pump facing complex conditions of variable speed, pressure and even direction, resulting in poor lubrication state of friction pairs. To study the evolution of lubrication states under varying work...

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Main Authors: Yantao Zhang, Zongbin Chen, Jun Che, Jian Liao
Format: Article
Language:English
Published: Nature Portfolio 2025-01-01
Series:Scientific Reports
Subjects:
Online Access:https://doi.org/10.1038/s41598-025-86963-3
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author Yantao Zhang
Zongbin Chen
Jun Che
Jian Liao
author_facet Yantao Zhang
Zongbin Chen
Jun Che
Jian Liao
author_sort Yantao Zhang
collection DOAJ
description Abstract The operational characteristics of Electro-Hydraulic Actuator(EHA) result in the EHA internal pump facing complex conditions of variable speed, pressure and even direction, resulting in poor lubrication state of friction pairs. To study the evolution of lubrication states under varying working conditions, a joint simulation model using Simerics-MP+(Version: 5.2.13, https://www.simerics.com ) and MATLAB(Version: R2020a, https://www.mathworks.com/products/matlab.html ) was established, focusing on the gear ring/shell friction pair as the subject of study. The model was used to predict the micro-motion trajectory of the gear ring, and the results were validated through experimental measurements of dynamic changes. Results indicate that the simulation model can accurately predict oil film variations, with a calculation error of less than 7.6% for oil film thickness. The reduction in speed and the increase in load pressure will deteriorate the lubrication characteristics of the oil film in the friction pair. Under pump operating conditions, when the direction reversing rate increases from 20,000 rpm/s to 40,000 rpm/s, the average oil film thickness increases by 23.64%, while the fluctuation rate decrease by 2.57%. Similarly, when the direction reversing pressure decreases from 10 MPa to 5 MPa, the average oil film thickness increases by 22.39%, and the fluctuation rate decreases by 8.17%. During pump-motor working condition switching, an increase in the switching rate from 10,000 rpm/s to 40,000 rpm/s results in a 10.33% increase in average oil film thickness and a 20.9% decrease in fluctuation rate. This study significantly contributes to enhancing our comprehension of the evolutionary patterns of friction pairs in EHA internal pumps under varying operational conditions.
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spelling doaj-art-276b5dc599a54f8ca6dfc4c90da13a112025-02-02T12:18:02ZengNature PortfolioScientific Reports2045-23222025-01-0115112610.1038/s41598-025-86963-3Study on the influence of working condition variation on lubrication characteristics of EHA internal pumpYantao Zhang0Zongbin Chen1Jun Che2Jian Liao3Institute of Noise & Vibration, Naval University of EngineeringInstitute of Noise & Vibration, Naval University of EngineeringInstitute of Noise & Vibration, Naval University of EngineeringInstitute of Noise & Vibration, Naval University of EngineeringAbstract The operational characteristics of Electro-Hydraulic Actuator(EHA) result in the EHA internal pump facing complex conditions of variable speed, pressure and even direction, resulting in poor lubrication state of friction pairs. To study the evolution of lubrication states under varying working conditions, a joint simulation model using Simerics-MP+(Version: 5.2.13, https://www.simerics.com ) and MATLAB(Version: R2020a, https://www.mathworks.com/products/matlab.html ) was established, focusing on the gear ring/shell friction pair as the subject of study. The model was used to predict the micro-motion trajectory of the gear ring, and the results were validated through experimental measurements of dynamic changes. Results indicate that the simulation model can accurately predict oil film variations, with a calculation error of less than 7.6% for oil film thickness. The reduction in speed and the increase in load pressure will deteriorate the lubrication characteristics of the oil film in the friction pair. Under pump operating conditions, when the direction reversing rate increases from 20,000 rpm/s to 40,000 rpm/s, the average oil film thickness increases by 23.64%, while the fluctuation rate decrease by 2.57%. Similarly, when the direction reversing pressure decreases from 10 MPa to 5 MPa, the average oil film thickness increases by 22.39%, and the fluctuation rate decreases by 8.17%. During pump-motor working condition switching, an increase in the switching rate from 10,000 rpm/s to 40,000 rpm/s results in a 10.33% increase in average oil film thickness and a 20.9% decrease in fluctuation rate. This study significantly contributes to enhancing our comprehension of the evolutionary patterns of friction pairs in EHA internal pumps under varying operational conditions.https://doi.org/10.1038/s41598-025-86963-3Internal gear pumpVariable operating conditionFilm lubricationGear ring/Shell friction pair
spellingShingle Yantao Zhang
Zongbin Chen
Jun Che
Jian Liao
Study on the influence of working condition variation on lubrication characteristics of EHA internal pump
Scientific Reports
Internal gear pump
Variable operating condition
Film lubrication
Gear ring/Shell friction pair
title Study on the influence of working condition variation on lubrication characteristics of EHA internal pump
title_full Study on the influence of working condition variation on lubrication characteristics of EHA internal pump
title_fullStr Study on the influence of working condition variation on lubrication characteristics of EHA internal pump
title_full_unstemmed Study on the influence of working condition variation on lubrication characteristics of EHA internal pump
title_short Study on the influence of working condition variation on lubrication characteristics of EHA internal pump
title_sort study on the influence of working condition variation on lubrication characteristics of eha internal pump
topic Internal gear pump
Variable operating condition
Film lubrication
Gear ring/Shell friction pair
url https://doi.org/10.1038/s41598-025-86963-3
work_keys_str_mv AT yantaozhang studyontheinfluenceofworkingconditionvariationonlubricationcharacteristicsofehainternalpump
AT zongbinchen studyontheinfluenceofworkingconditionvariationonlubricationcharacteristicsofehainternalpump
AT junche studyontheinfluenceofworkingconditionvariationonlubricationcharacteristicsofehainternalpump
AT jianliao studyontheinfluenceofworkingconditionvariationonlubricationcharacteristicsofehainternalpump