FORECAST OF BENDING FATIGUE LIFE FOR GEARS CONSIDERING THE INFLUENCE OF RESIDUAL STRESS AND HARDNESS

In order to study the influence of residual stress and hardness on bending fatigue performance of gear, the 20MnCrS5 steel gear with carburizing heat treatment was taken as the research object, and composite small diameter shot peening strengthening treatment was carried out to realize the gear with...

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Main Authors: ZHAO Pengbo, CHEN Yong, YOU Hui, ZHOU Xingyun, LI Guangxin, WU Yimin, LIU Xianghuan
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2025-02-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2025.02.007
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author ZHAO Pengbo
CHEN Yong
YOU Hui
ZHOU Xingyun
LI Guangxin
WU Yimin
LIU Xianghuan
author_facet ZHAO Pengbo
CHEN Yong
YOU Hui
ZHOU Xingyun
LI Guangxin
WU Yimin
LIU Xianghuan
author_sort ZHAO Pengbo
collection DOAJ
description In order to study the influence of residual stress and hardness on bending fatigue performance of gear, the 20MnCrS5 steel gear with carburizing heat treatment was taken as the research object, and composite small diameter shot peening strengthening treatment was carried out to realize the gear with different hardness and residual stress states of the same material.Based on the maximum principal strain criterion, incorporating separate factors for residual stress influence and residual stress-hardness coupling influence were introduced respectively to establish the fatigue life prediction model.Through shot-peened gear bending fatigue tests, optimal values for both the residual stress influence coefficient and correction coefficient were determined.The two models’ accuracy for life prediction was contrasted, and the accuracy of these models was further verified through unshot peened gear bending fatigue test.The results show that considering only residual stress influence yielded an optimal value of 0.09 for the residual stress influence coefficient, the model achieving high life predictive accuracy.Whereas considering the effects of residual stresses and hardness, it requires a correction coefficient with an optimal value of 0.04, the model achieve even higher predictive accuracy.
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issn 1001-9669
language zho
publishDate 2025-02-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-4568afccebda4f10b348fa65ff75eaad2025-08-20T02:00:43ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692025-02-0147536084620955FORECAST OF BENDING FATIGUE LIFE FOR GEARS CONSIDERING THE INFLUENCE OF RESIDUAL STRESS AND HARDNESSZHAO PengboCHEN YongYOU HuiZHOU XingyunLI GuangxinWU YiminLIU XianghuanIn order to study the influence of residual stress and hardness on bending fatigue performance of gear, the 20MnCrS5 steel gear with carburizing heat treatment was taken as the research object, and composite small diameter shot peening strengthening treatment was carried out to realize the gear with different hardness and residual stress states of the same material.Based on the maximum principal strain criterion, incorporating separate factors for residual stress influence and residual stress-hardness coupling influence were introduced respectively to establish the fatigue life prediction model.Through shot-peened gear bending fatigue tests, optimal values for both the residual stress influence coefficient and correction coefficient were determined.The two models’ accuracy for life prediction was contrasted, and the accuracy of these models was further verified through unshot peened gear bending fatigue test.The results show that considering only residual stress influence yielded an optimal value of 0.09 for the residual stress influence coefficient, the model achieving high life predictive accuracy.Whereas considering the effects of residual stresses and hardness, it requires a correction coefficient with an optimal value of 0.04, the model achieve even higher predictive accuracy.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2025.02.00720MnCrS5 carburized gearBending fatigueComposite small diameter shot peeningLife forecastMaximum principal strain criterion
spellingShingle ZHAO Pengbo
CHEN Yong
YOU Hui
ZHOU Xingyun
LI Guangxin
WU Yimin
LIU Xianghuan
FORECAST OF BENDING FATIGUE LIFE FOR GEARS CONSIDERING THE INFLUENCE OF RESIDUAL STRESS AND HARDNESS
Jixie qiangdu
20MnCrS5 carburized gear
Bending fatigue
Composite small diameter shot peening
Life forecast
Maximum principal strain criterion
title FORECAST OF BENDING FATIGUE LIFE FOR GEARS CONSIDERING THE INFLUENCE OF RESIDUAL STRESS AND HARDNESS
title_full FORECAST OF BENDING FATIGUE LIFE FOR GEARS CONSIDERING THE INFLUENCE OF RESIDUAL STRESS AND HARDNESS
title_fullStr FORECAST OF BENDING FATIGUE LIFE FOR GEARS CONSIDERING THE INFLUENCE OF RESIDUAL STRESS AND HARDNESS
title_full_unstemmed FORECAST OF BENDING FATIGUE LIFE FOR GEARS CONSIDERING THE INFLUENCE OF RESIDUAL STRESS AND HARDNESS
title_short FORECAST OF BENDING FATIGUE LIFE FOR GEARS CONSIDERING THE INFLUENCE OF RESIDUAL STRESS AND HARDNESS
title_sort forecast of bending fatigue life for gears considering the influence of residual stress and hardness
topic 20MnCrS5 carburized gear
Bending fatigue
Composite small diameter shot peening
Life forecast
Maximum principal strain criterion
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2025.02.007
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