Study of fatigue crack initiation location of wheel and rail under rolling contact using finite element method

The rail transit system is widely used for freight and passenger transportation. Due to the fact that its economic worthiness and high safety mode. Maintenance and damage prevention of wheel and rail are important factors affecting the safety of the system. The previous studies show that the most da...

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Main Authors: Jaifu Apichai, Raeon Suthep, Pimsarn Monsak
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2018/51/matecconf_iceast2018_02012.pdf
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spelling doaj-409a137354b240539db555abe0d502992021-04-02T15:07:35ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011920201210.1051/matecconf/201819202012matecconf_iceast2018_02012Study of fatigue crack initiation location of wheel and rail under rolling contact using finite element methodJaifu Apichai0Raeon Suthep1Pimsarn Monsak2Mechanical Engineering Department, Faculty of Engineering, King Mongkut's Institute of Technology LadkrabangMass Rapid Transit Authority of ThailandMechanical Engineering Department, Faculty of Engineering, King Mongkut's Institute of Technology LadkrabangThe rail transit system is widely used for freight and passenger transportation. Due to the fact that its economic worthiness and high safety mode. Maintenance and damage prevention of wheel and rail are important factors affecting the safety of the system. The previous studies show that the most damage of wheel and rail is fatigue cracking, which is caused by the contact stress resulting from wheel and rail interaction. This article presents the study of the fatigue crack initiation location of wheel and rail under rolling contact at the wheel speed of 80 km/h using Finite Element Method (FEM). The three dimensional finite element models were created using the UIC60E1 wheel profile and BS100 rail profile. The Dang Van criteria was applied to analyse the fatigue crack initiation location in case of the wheel's position was changed along the rail lateral direction while the rail inclination angle was also varied at 0, 1/40, 1/30 and 1/20, respectively. The analysing results show that the fatigue crack initiation, determined by the Dang Van stress ratio, tends to increase when the wheel is moved from gauge side to field side. Additionally, the fatigue crack damage is likely to decrease when the rail inclination increases up to the inclination of 1/30 and the fatigue crack initiation locations were found underneath the wheel and rail surfaces. The obtained result can be a primary guideline for maintenance planning.https://www.matec-conferences.org/articles/matecconf/pdf/2018/51/matecconf_iceast2018_02012.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Jaifu Apichai
Raeon Suthep
Pimsarn Monsak
spellingShingle Jaifu Apichai
Raeon Suthep
Pimsarn Monsak
Study of fatigue crack initiation location of wheel and rail under rolling contact using finite element method
MATEC Web of Conferences
author_facet Jaifu Apichai
Raeon Suthep
Pimsarn Monsak
author_sort Jaifu Apichai
title Study of fatigue crack initiation location of wheel and rail under rolling contact using finite element method
title_short Study of fatigue crack initiation location of wheel and rail under rolling contact using finite element method
title_full Study of fatigue crack initiation location of wheel and rail under rolling contact using finite element method
title_fullStr Study of fatigue crack initiation location of wheel and rail under rolling contact using finite element method
title_full_unstemmed Study of fatigue crack initiation location of wheel and rail under rolling contact using finite element method
title_sort study of fatigue crack initiation location of wheel and rail under rolling contact using finite element method
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description The rail transit system is widely used for freight and passenger transportation. Due to the fact that its economic worthiness and high safety mode. Maintenance and damage prevention of wheel and rail are important factors affecting the safety of the system. The previous studies show that the most damage of wheel and rail is fatigue cracking, which is caused by the contact stress resulting from wheel and rail interaction. This article presents the study of the fatigue crack initiation location of wheel and rail under rolling contact at the wheel speed of 80 km/h using Finite Element Method (FEM). The three dimensional finite element models were created using the UIC60E1 wheel profile and BS100 rail profile. The Dang Van criteria was applied to analyse the fatigue crack initiation location in case of the wheel's position was changed along the rail lateral direction while the rail inclination angle was also varied at 0, 1/40, 1/30 and 1/20, respectively. The analysing results show that the fatigue crack initiation, determined by the Dang Van stress ratio, tends to increase when the wheel is moved from gauge side to field side. Additionally, the fatigue crack damage is likely to decrease when the rail inclination increases up to the inclination of 1/30 and the fatigue crack initiation locations were found underneath the wheel and rail surfaces. The obtained result can be a primary guideline for maintenance planning.
url https://www.matec-conferences.org/articles/matecconf/pdf/2018/51/matecconf_iceast2018_02012.pdf
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AT raeonsuthep studyoffatiguecrackinitiationlocationofwheelandrailunderrollingcontactusingfiniteelementmethod
AT pimsarnmonsak studyoffatiguecrackinitiationlocationofwheelandrailunderrollingcontactusingfiniteelementmethod
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