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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2011. LRFD Metal Loss and Service-Life Strength Reduction Factors for Metal-Reinforced Systems. Washington, DC: The National Academies Press. doi: 10.17226/14497.
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Page 48
Page 49
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2011. LRFD Metal Loss and Service-Life Strength Reduction Factors for Metal-Reinforced Systems. Washington, DC: The National Academies Press. doi: 10.17226/14497.
×
Page 49
Page 50
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2011. LRFD Metal Loss and Service-Life Strength Reduction Factors for Metal-Reinforced Systems. Washington, DC: The National Academies Press. doi: 10.17226/14497.
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Page 50

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48 AASHTO, 2002a, Standard Specifications for Transportation Materials and Methods of Sampling and Testing, 20th ed. American Association of State Highway and Transportation Officials, Washington, D.C. AASHTO, 2002b, Standard Specifications for Highway Bridges, Division I, 17th ed. American Association for Transportation and Highway and Transportation Officials, Washington, D.C. AASHTO, 2009, LRFD Bridge Design Specifications, 4th ed. with Interims, American Association of State Highway and Transportation Officials, Washington, D.C. Allen, T., Christopher, B., Elias, V., and DiMaggio, J., 2001, Development of the Simplified Method for Internal Stability of Mechanically Stabilized Earth Walls, Report No. WA-RD 513.1, Washington State Trans- portation Center, Seattle, 108 p. Allen, T. M., A. S. Nowak, and R. J. 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49 Elias, V., 1990, Durability/Corrosion of Soil Reinforced Structures, Report No. FHWA-RD-89-186, Office of Engineering and Highway Oper- ations, R&D, McLean, Virginia, 173 p. Elias, V., 1997, Corrosion/Degradation of Soil Reinforcements for Mechan- ically Stabilized Earth Walls and Reinforced Slopes, FHWA Report No. FHWA-SA-96-072, NTIS, Springfield, Virginia, 105 p. Elias, V., Fishman, K. L., Christopher, B. R., and Berg, R. R., 2009, Corrosion/Degradation of Soil Reinforcements for Mechanically Stabilized Earth Walls and Reinforced Soil Slopes, FHWA Report No. FHWA-NHI-09-087, NTIS, Springfield, Virginia. Fédération Internationale de la Précontrainte (FIP) (International Fed- eration for Prestressing), 1986, Corrosion and Corrosion Protection of Prestressed Ground Anchorages, State of the Art Report, Thomas Telford, London, United Kingdom. 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A., 1978, Corrosion in Reinforced Soil Structures, Proc. ASCE Symposium on Earth Reinforcement, Pittsburgh, Pennsylvania. Lawson, K. M., Thompson, N. G., Islam, M., and Schofield, M. J., 1993, Monitoring Corrosion of Reinforced Soil Structures, British Jour- nal of NDT, British Institute of Nondestructive Testing, Liverpool, England, 35(6), pp. 319–324. Liao, S. T., Huang, C. K., and Wang, C. Y., 2008, Sonic Echo and Impulse Response Tests for Length Evaluation of Soil Nails in Various Bond- ing Mediums, Canadian Geotechnical Journal, Vol. 45, pp. 1025–1035. Lokse, A., 1992, Durability and Long-Term Performance of Rock Bolts, Ph.D. Dissertation, Norwegian Institute of Technology, University of Trondiem. Lumenaut, 2007, Software Manual, Version 3.4.21, http://www.lume naut.com. McGee, P., 1985, Reinforced Earth Wall Strip Serviceability Study, Final Report: Study No. 8405, Georgia Department of Transportation, Atlanta, GA, 24 p. 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50 Sagues, A. A., Rossi, J., Scott, R. J., Pena, J. A., and Simmons, T., 1998. Influence of Corrosive Inundation on the Corrosion Rates of Galva- nized Tie Straps in Mechanically Stabilized Earth Walls, Final Report WPI0510686, Florida Department of Transportation Research Center, Tallahassee. Sagues, A. A., Scott, R., Rossi, J., Pena, J. A., and Powers, R., 2000, Corro- sion of Galvanized Strips in Florida Reinforced Earth Walls, Journal of Materials in Civil Engineering, ASCE, Reston, Virginia. Smith, A., Jailloux, J. M., and Segrestin, P., 1996, Durability of Galva- nized Steel Reinforcements as a Function of their Shape, Earth Rein- forcement, Ochiai, Yasufuku, and Omine, eds., Balkema, Rotterdam, pp. 55–60. Stern, M., and Geary, A. L., 1957, Electrochemical Polarization, Journal of the Electrochemical Society, 104(1), p. 56. Task Force 27—AASHTO-AGC-ARBTA, 1990, Ground Modification Techniques for Transportation Applications. Terre Armée Internationale (TAI), 1977, Durability of Reinforcing Strips, Report R50, Paris, France. Timmerman, D. H., 1990, Evaluation of Mechanically Stabilized Embank- ments as Support for Bridge Structures, Interim Research Report, Ohio Department of Transportation. USACOE, 1980, Engineering and Design of Rock Reinforcement, EM 1110-1-2907, Department of the Army Corps of Engineers, Office of the Chief of Engineers, Washington, D.C. Vardeman, S. B., 1994, Statistics for Engineering Problem Solving, PES Publishing Co., Boston, Massachusetts, 712 p. Weatherby, D. E., 1982, Tiebacks, FHWA/RD-82/047, NTIS, Springfield, Virginia. Weerasinghe, R. B., and Adams, D., 1997, A Technical Review of Rock Anchorage Practice 1976-1996, Ground Anchorages and Anchored Structures, Edited by G. S. Littlejohn, Thomas Telford, London, England, pp. 481–491. Wheeler, J. J., 1999, NYSDOT, MSES Corrosion Evaluation Program, End of the Year Report for 1998, NYSDOT Geotechnical Engineering Bureau, Albany, New York. Wheeler, J. J., 2000, NYSDOT, MSES Corrosion Evaluation Program, End of the Year Report for 1999, NYSDOT Geotechnical Engineering Bureau, Albany, New York. Wheeler, J. J., 2001, NYSDOT, MSES Corrosion Evaluation Program, End of the Year Report for 2000, NYSDOT Geotechnical Engineering Bureau, Albany, New York. Wheeler, J. J., 2002(a), New York’s Mechanically Stabilized Earth Cor- rosion Evaluation Program, Presented at 81st Annual Meeting of the Transportation Research Board, Washington, D.C. Wheeler, J. J., 2002(b), NYSDOT, MSES Corrosion Evaluation Program, End of the Year Report for 2001, NYSDOT Geotechnical Engineering Bureau, Albany, New York. Withiam, J. L., Voytko, E. P., Barker, R. M., Duncan, J. M., Kelly, B. C., Musser, S. C., and Elias, V., 1998, Load and Resistance Factor Design (LRFD) for Highway Bridge Substructures, FHWA HI-98-032, Fed- eral Highway Administration, Washington, D.C. Withiam, J. L., Fishman, K. L., and Gaus, M. P., 2002, NCHRP Report 477: Recommended Practice for Evaluation of Metal-Tensioned Systems in Geotechnical Applications, TRB, National Research Council, Wash- ington, D.C., 93 p. Whiting, D., 1986, Corrosion Susceptibility of Reinforced Earth Systems: Field Surveys, Corrosion Effect of Stray Currents and the Techniques for Evaluating Corrosion of Rebars in Concrete, ASTM STP 906, V. Chaker, ed., American Society for Testing and Materials, Philadel- phia, pp. 64–77.

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TRB’s National Cooperative Highway Research Program (NCHRP) Report 675: LRFD Metal Loss and Service-Life Strength Reduction Factors for Metal-Reinforced Systems explores the development of metal loss models for metal-reinforced systems that are compatible with the American Association of State Highway and Transportation Officials' Load and Resistance Factor Design Bridge Design Specifications.

NCHRP Research Results Digest 364: Validation of LRFD Metal Loss and Service-Life Strength Reduction Factors for Metal-Reinforced Systems summarizes the results of research to further validate some key results of a project that resulted in publication of NCHRP Report 675.

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