Evaluation of Ultra-High-Performance Fiber-Reinforced Concrete

Recently, a new ultra-high-performance fiber-reinforced concrete (UHPC) was introduced into construction. The fibers in UHPC provide tensile capacity across cracks, resulting in high shear capacity in bending members. Typically, additional reinforcement for shear is not required. The Virginia Department of Transportation (VDOT) is experimenting with UHPC to determine the possibility of using it in transportation structures. The first bridge in Virginia to use UHPC beams was the bridge on Route 624 over Cat Point Creek in Richmond County. The specified minimum 28-day compressive strength was 23 ksi and the specified maximum water– cementitious material ratio was 0.2. UHPC with high strength and very low permeability was used in five beams in one of the 10 spans of the bridge. The purpose of this study was to evaluate the use of UHPC in the Route 624 Bridge. This was achieved by (1) observing the casting of UHPC beams; (2) evaluating the material properties of the UHPC; (3) testing a test beam to failure; (4) measuring strains in beams; and (5) noting any deck cracking. The results of the study indicated that the use of the UHPC led to very high strength and high durability attributable to a very low water-cementitious material ratio, low permeability, high resistance to cycles of freezing and thawing, and very tight cracks under load, all of which should provide for a much longer service life compared to the use of conventional concrete. However, because of the high cost of UHPC, more efficient shapes, design requirements, and material and construction specifications need to be developed to make UHPC practical for beams and other uses. The study recommends that UHPC be considered for use in closure pours and beams with optimized cross sections. ii DISCLAIMER The contents of this report reflect the views of the author, who is responsible for the facts and the accuracy of the data presented herein. The contents do no necessarily reflect the official views or policies of the Virginia Department of Transportation, the Commonwealth Transportation Board, or the Federal Highway Administration. This report does not constitute a standard, specification, or regulation. ABSTRACT Recently, a new ultra-high-performance fiber-reinforced concrete (UHPC) was introduced into construction. The fibers in UHPC provide tensile capacity across cracks, resulting in high shear capacity in bending members. Typically, additional reinforcement for shear is not required. The Virginia Department of Transportation (VDOT) is experimenting with UHPC to determine the possibility of using …

[1]  G. Parsekian,et al.  Innovative ultra-high performance concrete structures , 2008 .

[2]  Turner-Fairbank Highway Analysis of an Ultra-High Performance Concrete Two-Way Ribbed Bridge Deck Slab , 2007 .

[3]  R. Villaverde,et al.  Structural Engineering in Natural Hazards Mitigation , 1993 .

[4]  John J Roller,et al.  FEASIBILITY EVALUATION OF UTILIZING HIGH STRENGTH CONCRETE IN DESIGN AND CONSTRUCTION OF HIGHWAY BRIDGE STRUCTURES. INTERIM REPORT , 1992 .

[5]  Celik Ozyildirim HPC Bridge Decks in Virginia , 1999 .

[6]  Dubravka Bjegović,et al.  Ultra High Performance Fibre-Reinforced Concretes-Interim Recommendations , 2004 .

[7]  Dean Bierwagen,et al.  Ultra High Performance Concrete Highway Bridge , 2005 .

[8]  Sidney M. Levy,et al.  Virginia Department of Transportation , 2011 .

[9]  Hesson Park Model-based optimization of ultra high performance concrete highway bridge girders , 2003 .

[10]  Paul Zia,et al.  MECHANICAL BEHAVIOR OF HIGH PERFORMANCE CONCRETES, VOLUME 2: PRODUCTION OF HIGH PERFORMANCE CONCRETE , 1993 .

[11]  Irving Kett,et al.  Compressive Strength of Cylindrical Concrete Specimens (C 39) , 2009 .

[12]  Benjamin A. Graybeal,et al.  Material Property Characterization of Ultra-High Performance Concrete , 2006 .

[13]  Vic H. Perry INNOVATIVE FIELD-CAST UHPC JOINTS FOR PRECAST BRIDGE DECKS (SIDE-BY-SIDE DECK BULB-TEES), VILLAGE OF LYONS, NEW YORK: DESIGN, PROTOTYPING, TESTING AND CONSTRUCTION , 2010 .

[14]  Jan Šircelj,et al.  Scaling resistance of concrete surfaces exposed to deicing chemicals , 2013 .

[15]  Walter Podolny,et al.  THE FEDERAL OUTLOOK FOR HIGH STRENGTH CONCRETE BRIDGES , 1993 .

[16]  Benjamin A. Graybeal,et al.  Structural Behavior of Ultra-High Performance Concrete Prestressed I-Girders , 2006 .