Capacity of prestressed concrete bridge decks under fatigue loading

Author:

Lantsoght Eva O. L.1ORCID,van der Veen Cor2,Koekkoek Rutger3,Sliedrecht Henk4

Affiliation:

1. Universidad San Francisco de Quito, Quito, Ecuador; Delft University of Technology, Delft, the Netherlands

2. Delft University of Technology, Delft, the Netherlands

3. BAM, Gouda, the Netherlands

4. Rijkswaterstaat, Utrecht, the Netherlands

Abstract

<p>In The Netherlands, existing slab-between-girder bridges with prestressed girders and thin transversely prestressed concrete decks require assessment. The punching capacity was studied in a previous series of experiments, showing a higher capacity thanks to compressive membrane action in the deck. Then, concerns were raised with regard to fatigue loading. To address this, two series of large-scale experiments were carried out, varying the number of loads (single wheel print versus double wheel print), the loading sequence (constant amplitude versus variable amplitude, and different loading sequences for variable amplitude), and the distance between the prestressing ducts. An S-N curve is developed for the assessment of slab-between-girder bridges. The experiments showed that compressive membrane actions enhances the capacity of thin transversely prestressed decks subjected to fatigue loading.</p>

Publisher

International Association for Bridge and Structural Engineering (IABSE)

Reference18 articles.

1. Code Committee 351001, NEN 6720 Technical Foundations for Building Codes,Concrete provisions TGB 1990 - Structural requirements and calculation methods (VBC 1995) (in Dutch). 1995, Delft, The Netherlands: Civil engineering center for research and regulation, Dutch Normalization Institute,. 245.

2. CEN, Eurocode 2: Design of Concrete Structures - Part 1-1 General Rules and Rules for Buildings. NEN-EN 1992-1- 1:2005. 2005, Comité Européen de Normalisation: Brussels, Belgium. p. 229.

3. Recommendations for the Shear Assessment of Reinforced Concrete Slab Bridges from Experiments;Eva Olivia Leontien Lantsoght;Structural Engineering International

4. Amir, S., et al., Experiments on Punching Shear Behavior of Prestressed Concrete Bridge Decks. Aci Structural Journal, 2016. 113(3): p. 627-636.

5. Collings, D. and J. Sagaseta, A review of arching and compressive membrane action in concrete bridges. Institution of Civil Engineers – Bridge Engineering, 2015. 169(4): p. 271-284.

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