National Academies Press: OpenBook

Design of Concrete Bridge Beams Prestressed with CFRP Systems (2019)

Chapter: Appendices A Through F

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Page 75
Suggested Citation:"Appendices A Through F." National Academies of Sciences, Engineering, and Medicine. 2019. Design of Concrete Bridge Beams Prestressed with CFRP Systems. Washington, DC: The National Academies Press. doi: 10.17226/25582.
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Page 75
Page 76
Suggested Citation:"Appendices A Through F." National Academies of Sciences, Engineering, and Medicine. 2019. Design of Concrete Bridge Beams Prestressed with CFRP Systems. Washington, DC: The National Academies Press. doi: 10.17226/25582.
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Page 76
Page 77
Suggested Citation:"Appendices A Through F." National Academies of Sciences, Engineering, and Medicine. 2019. Design of Concrete Bridge Beams Prestressed with CFRP Systems. Washington, DC: The National Academies Press. doi: 10.17226/25582.
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Page 77
Page 78
Suggested Citation:"Appendices A Through F." National Academies of Sciences, Engineering, and Medicine. 2019. Design of Concrete Bridge Beams Prestressed with CFRP Systems. Washington, DC: The National Academies Press. doi: 10.17226/25582.
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Page 78

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75 Appendices A through F are not reproduced herein; they are available online and provide details on the different aspects of this research. The appendices were prepared by the NCHRP Project 12-97 research team at the University of Houston. • Appendix A: Review of Previous Work • Appendix B: Parameters Influencing the Design • Appendix C: Experimental Testing Program • Appendix D: Test Results and Discussions • Appendix E: Finite Element and Numerical Simulations • Appendix F: Reliability Analysis Study These appendices are available on the NCHRP Project 12-97 webpage at https://apps.trb.org/ cmsfeed/TRBNetProjectDisplay.asp?ProjectID=3410. A P P E N D I C E S A T H R O U G H F

Abbreviations and acronyms used without definitions in TRB publications: A4A Airlines for America AAAE American Association of Airport Executives AASHO American Association of State Highway Officials AASHTO American Association of State Highway and Transportation Officials ACI–NA Airports Council International–North America ACRP Airport Cooperative Research Program ADA Americans with Disabilities Act APTA American Public Transportation Association ASCE American Society of Civil Engineers ASME American Society of Mechanical Engineers ASTM American Society for Testing and Materials ATA American Trucking Associations CTAA Community Transportation Association of America CTBSSP Commercial Truck and Bus Safety Synthesis Program DHS Department of Homeland Security DOE Department of Energy EPA Environmental Protection Agency FAA Federal Aviation Administration FAST Fixing America’s Surface Transportation Act (2015) FHWA Federal Highway Administration FMCSA Federal Motor Carrier Safety Administration FRA Federal Railroad Administration FTA Federal Transit Administration HMCRP Hazardous Materials Cooperative Research Program IEEE Institute of Electrical and Electronics Engineers ISTEA Intermodal Surface Transportation Efficiency Act of 1991 ITE Institute of Transportation Engineers MAP-21 Moving Ahead for Progress in the 21st Century Act (2012) NASA National Aeronautics and Space Administration NASAO National Association of State Aviation Officials NCFRP National Cooperative Freight Research Program NCHRP National Cooperative Highway Research Program NHTSA National Highway Traffic Safety Administration NTSB National Transportation Safety Board PHMSA Pipeline and Hazardous Materials Safety Administration RITA Research and Innovative Technology Administration SAE Society of Automotive Engineers SAFETEA-LU Safe, Accountable, Flexible, Efficient Transportation Equity Act: A Legacy for Users (2005) TCRP Transit Cooperative Research Program TDC Transit Development Corporation TEA-21 Transportation Equity Act for the 21st Century (1998) TRB Transportation Research Board TSA Transportation Security Administration U.S. DOT United States Department of Transportation

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Carbon fiber reinforced polymer (CFRP) is becoming a recognized alternative to traditional construction materials in a wide range of civil engineering applications. An example of such applications is the use of CFRP cables or bars as prestressing tendons for concrete bridge girders, especially in aggressive environments where steel prestressing strands are susceptible to corrosion.

Despite their promise, CFRP prestressing tendons have not frequently been used for bridge construction in the United States; their use has been hampered by the lack of recognized design specifications.

NCHRP (National Cooperative Highway Research Program) Research Report 907: Design of Concrete Bridge Beams Prestressed with CFRP Systems proposes guidelines and presents research findings that are expected to advance and facilitate the use of CFRP systems in bridge applications. In addition, five design examples that illustrate the step-by-step use of the proposed guide specifications are provided.

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