Design of natural-rubber panel railroad crossing using finite element method

Thailand has a railway system that is available throughout the country, so there are several railroad crossings. These crossings are generally made of concrete or logs with multiple constraints. There are some disadvantages of concrete railroad crossing, such as, crack, noise during car passing over...

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Main Authors: Sukhom Aunna, Jangchud Ittipol, Pimsarn Monsak, Charoensuk Jarruwat, Treeporncharoen Veerachai
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_02056.pdf
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spelling doaj-d64ca8c6eeaa455b82a51156d25bd09f2021-04-02T15:07:35ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011920205610.1051/matecconf/201819202056matecconf_iceast2018_02056Design of natural-rubber panel railroad crossing using finite element methodSukhom Aunna0Jangchud Ittipol1Pimsarn Monsak2Charoensuk Jarruwat3Treeporncharoen Veerachai4Automotive Engineering, International College, King Mongkut’s Institute of Technology LadkrabangDepartment of Chemistry, Faculty of Science, King Mongkut’s Institute of Technology LadkrabangMechanical Engineering Department, Faculty of Engineering, King Mongkut’s Institute of Technology LadkrabangMechanical Engineering Department, Faculty of Engineering, King Mongkut’s Institute of Technology LadkrabangExtensive Research Polymers Co. Ltd.Thailand has a railway system that is available throughout the country, so there are several railroad crossings. These crossings are generally made of concrete or logs with multiple constraints. There are some disadvantages of concrete railroad crossing, such as, crack, noise during car passing over. To overcome these disadvantages, the softer materials should be used instead. Therefore, this research proposes the natural rubber, widely grown throughout Thailand, panel railroad crossing. However, the natural rubber alone is not enough to withstand the harsh condition. Thus, it is necessary to have some addition ingredients that will enhance the natural rubber properties. The material used in this research is a rubber compound between Chloroprene Rubber (CR) 75% and Natural rubber (NR) 25% blend with additives such as carbon black (CB), magnesium oxide (MgO) and sulfur (S8). The objectives of this article were to analyze the deformation of the natural rubber panel railroad crossing and to evaluate its safety factor, defined as the ratio of strain at break and the maximum equivalent strain, using finite element method. In the analysis, the applied loading of the model was obtained from the State Railway of Thailand. The analyzed results reveal that the deflection of rubber panels passes the standard from State Railway of Thailand. Safety factor of external rubber panel is 27.03 and for internal rubber panels are 9.12 and 15.29. The metal pads had elastically deformed and concrete railroad sleeper deformation was very small.https://www.matec-conferences.org/articles/matecconf/pdf/2018/51/matecconf_iceast2018_02056.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Sukhom Aunna
Jangchud Ittipol
Pimsarn Monsak
Charoensuk Jarruwat
Treeporncharoen Veerachai
spellingShingle Sukhom Aunna
Jangchud Ittipol
Pimsarn Monsak
Charoensuk Jarruwat
Treeporncharoen Veerachai
Design of natural-rubber panel railroad crossing using finite element method
MATEC Web of Conferences
author_facet Sukhom Aunna
Jangchud Ittipol
Pimsarn Monsak
Charoensuk Jarruwat
Treeporncharoen Veerachai
author_sort Sukhom Aunna
title Design of natural-rubber panel railroad crossing using finite element method
title_short Design of natural-rubber panel railroad crossing using finite element method
title_full Design of natural-rubber panel railroad crossing using finite element method
title_fullStr Design of natural-rubber panel railroad crossing using finite element method
title_full_unstemmed Design of natural-rubber panel railroad crossing using finite element method
title_sort design of natural-rubber panel railroad crossing using finite element method
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Thailand has a railway system that is available throughout the country, so there are several railroad crossings. These crossings are generally made of concrete or logs with multiple constraints. There are some disadvantages of concrete railroad crossing, such as, crack, noise during car passing over. To overcome these disadvantages, the softer materials should be used instead. Therefore, this research proposes the natural rubber, widely grown throughout Thailand, panel railroad crossing. However, the natural rubber alone is not enough to withstand the harsh condition. Thus, it is necessary to have some addition ingredients that will enhance the natural rubber properties. The material used in this research is a rubber compound between Chloroprene Rubber (CR) 75% and Natural rubber (NR) 25% blend with additives such as carbon black (CB), magnesium oxide (MgO) and sulfur (S8). The objectives of this article were to analyze the deformation of the natural rubber panel railroad crossing and to evaluate its safety factor, defined as the ratio of strain at break and the maximum equivalent strain, using finite element method. In the analysis, the applied loading of the model was obtained from the State Railway of Thailand. The analyzed results reveal that the deflection of rubber panels passes the standard from State Railway of Thailand. Safety factor of external rubber panel is 27.03 and for internal rubber panels are 9.12 and 15.29. The metal pads had elastically deformed and concrete railroad sleeper deformation was very small.
url https://www.matec-conferences.org/articles/matecconf/pdf/2018/51/matecconf_iceast2018_02056.pdf
work_keys_str_mv AT sukhomaunna designofnaturalrubberpanelrailroadcrossingusingfiniteelementmethod
AT jangchudittipol designofnaturalrubberpanelrailroadcrossingusingfiniteelementmethod
AT pimsarnmonsak designofnaturalrubberpanelrailroadcrossingusingfiniteelementmethod
AT charoensukjarruwat designofnaturalrubberpanelrailroadcrossingusingfiniteelementmethod
AT treeporncharoenveerachai designofnaturalrubberpanelrailroadcrossingusingfiniteelementmethod
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