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Ultimate limit states design of concrete railway sleepers
Author(s) -
Martin H. Murray,
Jian Bian
Publication year - 2011
Publication title -
proceedings of the institution of civil engineers - transport
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.337
H-Index - 23
eISSN - 1751-7710
pISSN - 0965-092X
DOI - 10.1680/tran.10.00048
Subject(s) - limiting , track (disk drive) , limit (mathematics) , structural engineering , engineering , probabilistic logic , civil engineering , construction engineering , computer science , mechanical engineering , mathematics , mathematical analysis , artificial intelligence
The railway industry has been slow to adopt limit states principles in the structural design of concrete sleepers for its tracks, despite the global take up of this form of design for almost every other type of structural element. Concrete sleeper design is still based on limiting stresses but is widely perceived by track engineers to lead to untapped reserves of strength in the sleepers. Limit design is a more rational philosophy, especially where it is based on the ultimate dynamic capacity of the concrete sleepers. The paper describes the development of equations and factors for a limit design methodology for concrete sleepers in flexure using a probabilistic evaluation of sleeper loading. The new method will also permit a cogent, defensible means of establishing the true capacity of the billions of concrete sleepers that are currently in-track around the world, leading to better utilisation of track infrastructure. The paper demonstrates how significant cost savings may be achieved by track owners

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