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《交通运输工程学报》[ISSN:1671-1637/CN:61-1369/U]

Issue:
2013年03期
Page:
1-8
Research Field:
道路与铁道工程
Publishing date:

Info

Title:
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Author(s):
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Keywords:
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PACS:
U443.33
DOI:
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Abstract:
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References:

[1] LIU X, MEDANI T O, SCARPAS A, et al. Experimental and numerical characterization of a membrane material for orthotropic steel deck bridges: part 2: development and implementation of a nonlinear constitutive model[J]. Finite Elements in Analysis and Design, 2008, 44(9/10): 580-594.
[2] MEDANI T O. Design principles of surfacings on orthotropic steel bridge decks[D]. Delft: Delft University of Technology, 2006.
[3] MEDANI T O, LIU X, HUURMAN M, et al. Experimental and numerical characterization of a membrane material for orthotropic steel deck bridges: part 1: experimental work and data interpretation[J]. Finite Elements in Analysis and Design, 2008, 44(9/10): 552-563.
[4] MEDANI T O, SCARPAS A, KOLSTEIN M H, et al. Design aspects for wearing courses on orthotropic steel bridge decks[C]∥International Society for Asphalt Pavements. Ninth International Conference on Asphalt Pavement. Copenhagen: International Society for Asphalt Pavements, 2002: 1-18.
[5] HUURMAN M, MEDANI T O, MOLENAAR A, et al.3D-FEM for estimation of the behaviour of asphalt surfacings on orthotropic steel deck bridges[C]∥TRB. 83rd TRB Annual Meeting. Washington DC: TRB, 2004: 1-24.
[6] SCARPAS A, LIU X. CAPA-3D finite elements system user's manual, parts Ⅰ, Ⅱ and Ⅲ[D]. Delft: Delft University of Technology, 2008.
[7] LIU X, SCARPAS A, LI J, et al. Application of MAT device to characterize the adhesive bonding strength of membrane in orthotropic steel deck bridges[C]∥ISAP. ISAP 2012, International Symposium on Heary Duty Asphalt Pavements and Bridge Deck Pavements. Nanjing: ISAP, 2012: 1-10.

Memo

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Last Update: 2013-07-30