Mechanical Performance of a Ballastless Track System for the Railway Bridges of High-Speed Lines: Experimental and Numerical Study under Thermal Loading
The mechanical performance of China Railway Track System type II (CRTS II) ballastless track suitable for High-Speed Railway (HSR) bridges is investigated in this project by testing a one-quarter-scaled three-span specimen under thermal loading. Stress analysis was performed both experimentally and...
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doaj-9ac71331e3744792a9b1bcb784cff2a82021-06-01T01:20:37ZengMDPI AGMaterials1996-19442021-05-01142876287610.3390/ma14112876Mechanical Performance of a Ballastless Track System for the Railway Bridges of High-Speed Lines: Experimental and Numerical Study under Thermal LoadingYingying Zhang0Lingyu Zhou1Akim D. Mahunon2Guangchao Zhang3Xiusheng Peng4Lei Zhao5Yahui Yuan6Department of Civil Engineering, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaDepartment of Civil Engineering, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaDepartment of Civil Engineering, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaDepartment of Civil Engineering, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaDepartment of Civil Engineering, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaDepartment of Civil Engineering, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaDepartment of Civil Engineering, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaThe mechanical performance of China Railway Track System type II (CRTS II) ballastless track suitable for High-Speed Railway (HSR) bridges is investigated in this project by testing a one-quarter-scaled three-span specimen under thermal loading. Stress analysis was performed both experimentally and numerically, via finite-element modeling in the latter case. The results showed that strains in the track slab, in the cement-emulsified asphalt (CA) mortar and in the track bed, increased nonlinearly with the temperature increase. In the longitudinal direction, the zero-displacement section between the track slab and the track bed was close to the 1/8L section of the beam, while the zero-displacement section between the track slab and the box girder bridge was close to the 3/8L section. The maximum values of the relative vertical displacement between the track bed and the bridge structure occurred in the section at three-quarters of the span. Numerical analysis showed that the lower the temperature, the larger the tensile stresses occurring in the different layers of the track structure, whereas the higher the temperature, the higher the relative displacement between the track system and the box girder bridge. Consequently, quantifying the stresses in the various components of the track structure resulting from sudden temperature drops and evaluating the relative displacements between the rails and the track bed resulting from high-temperature are helpful in the design of ballastless track structures for high-speed railway lines.https://www.mdpi.com/1996-1944/14/11/2876railway bridgeshigh-speed railwayballastless track structuresthermal loadrelative displacementsstress analysis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yingying Zhang Lingyu Zhou Akim D. Mahunon Guangchao Zhang Xiusheng Peng Lei Zhao Yahui Yuan |
spellingShingle |
Yingying Zhang Lingyu Zhou Akim D. Mahunon Guangchao Zhang Xiusheng Peng Lei Zhao Yahui Yuan Mechanical Performance of a Ballastless Track System for the Railway Bridges of High-Speed Lines: Experimental and Numerical Study under Thermal Loading Materials railway bridges high-speed railway ballastless track structures thermal load relative displacements stress analysis |
author_facet |
Yingying Zhang Lingyu Zhou Akim D. Mahunon Guangchao Zhang Xiusheng Peng Lei Zhao Yahui Yuan |
author_sort |
Yingying Zhang |
title |
Mechanical Performance of a Ballastless Track System for the Railway Bridges of High-Speed Lines: Experimental and Numerical Study under Thermal Loading |
title_short |
Mechanical Performance of a Ballastless Track System for the Railway Bridges of High-Speed Lines: Experimental and Numerical Study under Thermal Loading |
title_full |
Mechanical Performance of a Ballastless Track System for the Railway Bridges of High-Speed Lines: Experimental and Numerical Study under Thermal Loading |
title_fullStr |
Mechanical Performance of a Ballastless Track System for the Railway Bridges of High-Speed Lines: Experimental and Numerical Study under Thermal Loading |
title_full_unstemmed |
Mechanical Performance of a Ballastless Track System for the Railway Bridges of High-Speed Lines: Experimental and Numerical Study under Thermal Loading |
title_sort |
mechanical performance of a ballastless track system for the railway bridges of high-speed lines: experimental and numerical study under thermal loading |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2021-05-01 |
description |
The mechanical performance of China Railway Track System type II (CRTS II) ballastless track suitable for High-Speed Railway (HSR) bridges is investigated in this project by testing a one-quarter-scaled three-span specimen under thermal loading. Stress analysis was performed both experimentally and numerically, via finite-element modeling in the latter case. The results showed that strains in the track slab, in the cement-emulsified asphalt (CA) mortar and in the track bed, increased nonlinearly with the temperature increase. In the longitudinal direction, the zero-displacement section between the track slab and the track bed was close to the 1/8L section of the beam, while the zero-displacement section between the track slab and the box girder bridge was close to the 3/8L section. The maximum values of the relative vertical displacement between the track bed and the bridge structure occurred in the section at three-quarters of the span. Numerical analysis showed that the lower the temperature, the larger the tensile stresses occurring in the different layers of the track structure, whereas the higher the temperature, the higher the relative displacement between the track system and the box girder bridge. Consequently, quantifying the stresses in the various components of the track structure resulting from sudden temperature drops and evaluating the relative displacements between the rails and the track bed resulting from high-temperature are helpful in the design of ballastless track structures for high-speed railway lines. |
topic |
railway bridges high-speed railway ballastless track structures thermal load relative displacements stress analysis |
url |
https://www.mdpi.com/1996-1944/14/11/2876 |
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