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Exploration of super-large-span prestressed steel truss-concrete composite continuous rigid frame bridges

 Exploration of super-large-span prestressed steel truss-concrete composite continuous rigid frame bridges
Author(s): ,
Presented at IABSE Symposium: Large Structures and Infrastructures for Environmentally Constrained and Urbanised Areas, Venice, Italy, 22-24 September 2010, published in , pp. 710-711
DOI: 10.2749/222137810796063418
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To succeed to major advantages while overcome demerits of the existing prestressed concrete (PC) continuous rigid frame bridge, a new type of prestressed steel truss-concrete composite continuous r...
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Bibliographic Details

Author(s):

Medium: conference paper
Language(s): English
Conference: IABSE Symposium: Large Structures and Infrastructures for Environmentally Constrained and Urbanised Areas, Venice, Italy, 22-24 September 2010
Published in:
Page(s): 710-711 Total no. of pages: 8
Page(s): 710-711
Total no. of pages: 8
Year: 2010
DOI: 10.2749/222137810796063418
Abstract:

To succeed to major advantages while overcome demerits of the existing prestressed concrete (PC) continuous rigid frame bridge, a new type of prestressed steel truss-concrete composite continuous rigid frame bridge (PTCB) is put forward in this paper. The PTCB is schemed with a composite main beam combining steel truss with concrete prestressed in batches to fully exert the respective superiorities of shape steel, prestress tendons and high-strength concrete, which can greatly cut down the superstructure self weight and in turn enable a slimmer substructure shape compared with the PC correspondents. Therefore, the PTCB is especially suitable for design of super-large-span continuous rigid frame bridges. A preliminary analysis of a rigid frame bridge with a 400m span indicates: a PTCB design could effectively simplify the construction process, save the building time and result in a bridge structure with more concise mechanics and more reliable performances. In addition, the PTCB could basically avoid the latent distresses of uncontrollable long-term main- beam deflection and concrete cracking that often haunt the PC continuous rigid frame bridges.

Keywords:
concept design continuous rigid frame bridge steel truss-concrete composite beam construction technique