Laboratory and Field Testing of an Accelerated Bridge Construction Demonstration Bridge

Laboratory and Field Testing of an Accelerated Bridge Construction Demonstration Bridge PDF Author: Brent Phares
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 61

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Book Description
The US Highway 6 Bridge over Keg Creek outside of Council Bluffs, Iowa is a demonstration bridge site chosen to put into practice newly-developed Accelerated Bridge Construction (ABC) concepts. One of these new concepts is the use of prefabricated high performance concrete (HPC) bridge elements that are connected, in place, utilizing advanced material closure-pours and quick-to-install connection details. The Keg Creek Bridge is the first bridge in the US to utilize moment-resisting ultra-high performance concrete (UHPC) joints in negative moment regions over piers. Through laboratory and live load field testing, performance of these transverse joints as well as global bridge behavior is quantified and examined. The effectiveness of the structural performance of the bridge is evaluated to provide guidance for future designs of similar bridges throughout the US.

Laboratory and Field Testing of an Accelerated Bridge Construction Demonstration Bridge

Laboratory and Field Testing of an Accelerated Bridge Construction Demonstration Bridge PDF Author: Brent Phares
Publisher:
ISBN:
Category : Bridges
Languages : en
Pages : 61

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Book Description
The US Highway 6 Bridge over Keg Creek outside of Council Bluffs, Iowa is a demonstration bridge site chosen to put into practice newly-developed Accelerated Bridge Construction (ABC) concepts. One of these new concepts is the use of prefabricated high performance concrete (HPC) bridge elements that are connected, in place, utilizing advanced material closure-pours and quick-to-install connection details. The Keg Creek Bridge is the first bridge in the US to utilize moment-resisting ultra-high performance concrete (UHPC) joints in negative moment regions over piers. Through laboratory and live load field testing, performance of these transverse joints as well as global bridge behavior is quantified and examined. The effectiveness of the structural performance of the bridge is evaluated to provide guidance for future designs of similar bridges throughout the US.

Laboratory Testing of Ultra High Performance Concrete Deck Joints for Use in Accelerated Bridge Construction

Laboratory Testing of Ultra High Performance Concrete Deck Joints for Use in Accelerated Bridge Construction PDF Author: Douglas R. Hartwell
Publisher:
ISBN:
Category :
Languages : en
Pages : 124

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Book Description


A Guide for the Field Testing of Bridges

A Guide for the Field Testing of Bridges PDF Author: American Society of Civil Engineers. Committee on Safety of Bridges
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 86

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Book Description


Laboratory Testing of Precast Bridge Elements, Verification of Post-tensioning Forces and Construction Documentation of the Boone County IBRC Accelerated Bridge Replacement Project

Laboratory Testing of Precast Bridge Elements, Verification of Post-tensioning Forces and Construction Documentation of the Boone County IBRC Accelerated Bridge Replacement Project PDF Author: Samantha Jo Hockerman
Publisher:
ISBN: 9781109818208
Category :
Languages : en
Pages : 232

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Book Description
In July 2006, construction began on an accelerated bridge project in Boone County, Iowa that was composed of precast substructure elements and an innovative, precast deck panel system. The superstructure system consisted of full-depth deck panels that were prestressed in the transverse direction, and after installation on the prestressed concrete girders, post-tensioned in the longitudinal direction. Prior to construction, laboratory tests were completed on the precast abutment and pier cap elements. The substructure testing was to determine the punching shear strength of the elements. Post-tensioning testing and verification of the precast deck system was performed in the field. The forces in the tendons provided by the contractor were verified and losses due to the post-tensioning operation were measured. The stress (strain) distribution in the deck panels due to the post-tensioning was also measured and analyzed. The entire construction process for this bridge system was documented. Representatives from the Boone County Engineers Office, the prime contractor, precast fabricator, and researchers from Iowa State University provided feedback and suggestions for improving the constructability of this design.

Laboratory Testing of Precast Bridge Beck Panel Transverse Connections for Use in Accelerated Bridge Construction

Laboratory Testing of Precast Bridge Beck Panel Transverse Connections for Use in Accelerated Bridge Construction PDF Author: Scott D. Porter
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Precast concrete bridge deck panels have been used for decades to accelerate bridge construction. Cracking of the transverse connection between panels is a common problem that can damage deck overlays and cause connection leaking leading to corrosion of lower bridge elements. To better understand the behavior of bridge deck transverse female-to-female connections, shear and moment lab testing were performed at Utah State University for the Utah Department of Transportation. Two existing UDOT connections were tested, a welded stud connection and a post tensioned connection. A variation of the welded connection using rebar was also tested. In addition, two new curved bolt connections were tested as a new method of post tensioning a connection. The manner of connection cracking and associated cracking loads were recorded along with the ultimate connection capacities. The connections were also tested in a low cycle, high amplitude cyclical shear test. Lab testing showed that the welded stud connection had the lowest moment capacity. It also showed that the welded rebar connection had significantly higher strength than the welded stud connection with higher cracking and ultimate loads. Curved bolts were also shown to be a good way to post tension a connection with similar moment capacities as the post tensioned connection. Longer curved bolts were found to perform better than shorter curved bolts.

Accelerated Bridge Construction

Accelerated Bridge Construction PDF Author: Mohiuddin Ali Khan
Publisher: Elsevier
ISBN: 0124072259
Category : Technology & Engineering
Languages : en
Pages : 651

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Book Description
The traveling public has no patience for prolonged, high cost construction projects. This puts highway construction contractors under intense pressure to minimize traffic disruptions and construction cost. Actively promoted by the Federal Highway Administration, there are hundreds of accelerated bridge construction (ABC) construction programs in the United States, Europe and Japan. Accelerated Bridge Construction: Best Practices and Techniques provides a wide range of construction techniques, processes and technologies designed to maximize bridge construction or reconstruction operations while minimizing project delays and community disruption. Describes design methods for accelerated bridge substructure construction; reducing foundation construction time and methods by using pile bents Explains applications to steel bridges, temporary bridges in place of detours using quick erection and demolition Covers design-build systems' boon to ABC; development of software; use of fiber reinforced polymer (FRP) Includes applications to glulam and sawn lumber bridges, precast concrete bridges, precast joints details; use of lightweight aggregate concrete, aluminum and high-performance steel

Laboratory and Field Testing of FRP-reinforced Concrete Bridge

Laboratory and Field Testing of FRP-reinforced Concrete Bridge PDF Author:
Publisher:
ISBN:
Category : Concrete bridges
Languages : en
Pages :

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Book Description


Load Testing of Bridges

Load Testing of Bridges PDF Author: Eva Lantsoght
Publisher: CRC Press
ISBN: 0429556489
Category : Technology & Engineering
Languages : en
Pages : 429

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Book Description
Load Testing of Bridges, featuring contributions from almost fifty authors from around the world across two interrelated volumes, deals with the practical aspects, the scientific developments, and the international views on the topic of load testing of bridges. Volume 13, Load Testing of Bridges: Proof Load Testing and the Future of Load Testing, focuses first on proof load testing of bridges. It discusses the specific aspects of proof load testing during the preparation, execution, and post-processing of such a test (Part 1). The second part covers the testing of buildings. The third part discusses novel ideas regarding measurement techniques used for load testing. Methods using non-contact sensors, such as photography- and video-based measurement techniques are discussed. The fourth part discusses load testing in the framework of reliability-based decision-making and in the framework of a bridge management program. The final part of the book summarizes the knowledge presented across the two volumes, as well as the remaining open questions for research, and provides practical recommendations for engineers carrying out load tests. This work will be of interest to researchers and academics in the field of civil/structural engineering, practicing engineers and road authorities worldwide.

Laboratory and Field Testing and Evaluation of Precast Bridge Elements

Laboratory and Field Testing and Evaluation of Precast Bridge Elements PDF Author: Vernon William Wineland
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description


Innovative Bridge Designs for Rapid Renewal

Innovative Bridge Designs for Rapid Renewal PDF Author: HNTB Corporation, Genesis Structures Inc, Structural Engineering Associates, and Iowa State University
Publisher: Transportation Research Board
ISBN: 0309274109
Category :
Languages : en
Pages : 976

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Book Description
This report from the second Strategic Highway Research Program (SHRP 2), which is administered by the Transportation Research Board of the National Academies, documents the development of standardized approaches to designing and constructing complete bridge systems for rapid renewals.