Accelerated testing of super lightweight UHPC waffle deck under heavy vehicle simulator

Author:

Ghasemi Sahar1,Mirmiran Amir2,Xiao Yulin3,Mackie Kevin3

Affiliation:

1. Dannenbaum Engineering, Houston, TX, USA

2. University of Texas at Tyler, Tyler, TX, USA

3. Department of Civil, Environmental, and Construction Engineering, University of Central Florida, Orlando, FL, USA

Abstract

A super lightweight deck can enhance load rating and functionality of a bridge, especially those identified as structurally deficient. This study was aimed to develop and experimentally validate a novel bridge deck as an ultra-lightweight low-profile waffle slab of ultra-high-performance concrete (UHPC) with either carbon fiber reinforced polymer (CFRP) or high strength steel (HSS) reinforcement. The proposed system lends itself to accelerated bridge construction, rapid deck replacement in bridges with load restrictions, and bridge widening applications without the need to replace girders. Performance and failure modes of the proposed deck were initially assessed through extensive lab experiments and finite element analysis, which together confirmed that the proposed deck panel meets the AASHTO LRFD requirements. The proposed deck system is not susceptible to punching shear of its thin slab and fails in a rather ductile manner. To evaluate its long-term performance, the system was further tested under the dynamic impact of wheel load at the Accelerated Pavement Testing (APT) facility of the Florida Department of Transportation using a Heavy Vehicle Simulator (HVS).

Publisher

IOS Press

Subject

Building and Construction

Reference20 articles.

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2. Culmo MP . Accelerated bridge construction-experience in design, fabrication and erection of prefabricated bridge elements and systems. Report FHWA-HIF-12-013; 2011.

3. Ultra-high-performance concrete bridge deck reinforced with high-strength steel;Saleem;Structural J ACI,2011

4. Development length of high-strength steel rebar in ultrahigh performance concrete;Saleem;J Materials in Civil Eng. ASCE,2012

5. Ghasemi S . Innovative modular high-performance lightweight decks for accelerated bridge construction. PhD Dissertation, Florida International U., Miami, FL, 2015.

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