SIMULATION AND EXPERIMENTAL STUDY ON STRENGTH AND FATIGUE PERFORMANCE OF A SUV FRONT SUBFRAME (MT)

In order to improve the reliability of the front subframe of a front drive SUV, the strength and fatigue characteristics of the subframe under different working conditions are analyzed by comprehensively using the finite element method, multi-body dynamics theory, strength analysis theory and fatigu...

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Main Authors: LIU KeMing, YUAN Xin, DAI YuSen
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2023-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2023.04.011
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author LIU KeMing
YUAN Xin
DAI YuSen
author_facet LIU KeMing
YUAN Xin
DAI YuSen
author_sort LIU KeMing
collection DOAJ
description In order to improve the reliability of the front subframe of a front drive SUV, the strength and fatigue characteristics of the subframe under different working conditions are analyzed by comprehensively using the finite element method, multi-body dynamics theory, strength analysis theory and fatigue analysis theory, and through the established three-dimensional model of the front subframe and the rigid flexible coupling model of multi-body dynamics. The strength and fatigue tests of the subframe are carried out. The simulation results show that the deformation of steering connection point is 2.924 mm and 3.411 mm respectively under straight driving and steering conditions, and the deformation of stabilizer bar and torsion arm is 3.383 mm and 2.695 mm respectively. The strength test results show that, in the straight driving and steering conditions, the deformation of the steering point is 3.263 mm and 3.622 mm respectively, which are 11.59% and 6.19% higher than the simulation results. The deformation of the connection point of the stabilizer bar and the connection point of the torsion arm are 3.538 mm and 2.957 mm respectively. The experimental results are 4.58% and 9.72% higher than the simulation results respectively. The results show that there is no obvious difference between the experimental results and the simulation results, and the deformation of the subframe at each point conforms to the design. The fatigue test results of the subframe show that there are no cracks and plastic deformation in the subframe after 800 thousand torsion arm fatigue tests, 400 thousand braking force fatigue tests and 800 thousand lateral force fatigue tests, indicating that the fatigue characteristics of the subframe meet the requirements.
format Article
id doaj-art-04807d6c3ac1439ba8c9caed3d652f56
institution Kabale University
issn 1001-9669
language zho
publishDate 2023-01-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-04807d6c3ac1439ba8c9caed3d652f562025-01-15T02:40:56ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692023-01-0183884442274671SIMULATION AND EXPERIMENTAL STUDY ON STRENGTH AND FATIGUE PERFORMANCE OF A SUV FRONT SUBFRAME (MT)LIU KeMingYUAN XinDAI YuSenIn order to improve the reliability of the front subframe of a front drive SUV, the strength and fatigue characteristics of the subframe under different working conditions are analyzed by comprehensively using the finite element method, multi-body dynamics theory, strength analysis theory and fatigue analysis theory, and through the established three-dimensional model of the front subframe and the rigid flexible coupling model of multi-body dynamics. The strength and fatigue tests of the subframe are carried out. The simulation results show that the deformation of steering connection point is 2.924 mm and 3.411 mm respectively under straight driving and steering conditions, and the deformation of stabilizer bar and torsion arm is 3.383 mm and 2.695 mm respectively. The strength test results show that, in the straight driving and steering conditions, the deformation of the steering point is 3.263 mm and 3.622 mm respectively, which are 11.59% and 6.19% higher than the simulation results. The deformation of the connection point of the stabilizer bar and the connection point of the torsion arm are 3.538 mm and 2.957 mm respectively. The experimental results are 4.58% and 9.72% higher than the simulation results respectively. The results show that there is no obvious difference between the experimental results and the simulation results, and the deformation of the subframe at each point conforms to the design. The fatigue test results of the subframe show that there are no cracks and plastic deformation in the subframe after 800 thousand torsion arm fatigue tests, 400 thousand braking force fatigue tests and 800 thousand lateral force fatigue tests, indicating that the fatigue characteristics of the subframe meet the requirements.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2023.04.011Front subframeStrengthFatigue characteristicsSimulationTests
spellingShingle LIU KeMing
YUAN Xin
DAI YuSen
SIMULATION AND EXPERIMENTAL STUDY ON STRENGTH AND FATIGUE PERFORMANCE OF A SUV FRONT SUBFRAME (MT)
Jixie qiangdu
Front subframe
Strength
Fatigue characteristics
Simulation
Tests
title SIMULATION AND EXPERIMENTAL STUDY ON STRENGTH AND FATIGUE PERFORMANCE OF A SUV FRONT SUBFRAME (MT)
title_full SIMULATION AND EXPERIMENTAL STUDY ON STRENGTH AND FATIGUE PERFORMANCE OF A SUV FRONT SUBFRAME (MT)
title_fullStr SIMULATION AND EXPERIMENTAL STUDY ON STRENGTH AND FATIGUE PERFORMANCE OF A SUV FRONT SUBFRAME (MT)
title_full_unstemmed SIMULATION AND EXPERIMENTAL STUDY ON STRENGTH AND FATIGUE PERFORMANCE OF A SUV FRONT SUBFRAME (MT)
title_short SIMULATION AND EXPERIMENTAL STUDY ON STRENGTH AND FATIGUE PERFORMANCE OF A SUV FRONT SUBFRAME (MT)
title_sort simulation and experimental study on strength and fatigue performance of a suv front subframe mt
topic Front subframe
Strength
Fatigue characteristics
Simulation
Tests
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2023.04.011
work_keys_str_mv AT liukeming simulationandexperimentalstudyonstrengthandfatigueperformanceofasuvfrontsubframemt
AT yuanxin simulationandexperimentalstudyonstrengthandfatigueperformanceofasuvfrontsubframemt
AT daiyusen simulationandexperimentalstudyonstrengthandfatigueperformanceofasuvfrontsubframemt