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Page 58
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2016. Performance Specifications for Asphalt Mixtures. Washington, DC: The National Academies Press. doi: 10.17226/23564.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2016. Performance Specifications for Asphalt Mixtures. Washington, DC: The National Academies Press. doi: 10.17226/23564.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2016. Performance Specifications for Asphalt Mixtures. Washington, DC: The National Academies Press. doi: 10.17226/23564.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2016. Performance Specifications for Asphalt Mixtures. Washington, DC: The National Academies Press. doi: 10.17226/23564.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2016. Performance Specifications for Asphalt Mixtures. Washington, DC: The National Academies Press. doi: 10.17226/23564.
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Below is the uncorrected machine-read text of this chapter, intended to provide our own search engines and external engines with highly rich, chapter-representative searchable text of each book. Because it is UNCORRECTED material, please consider the following text as a useful but insufficient proxy for the authoritative book pages.

58 RefeRences Alvarez, A., J. Button, and C. Estakhri, Field and Labora- tory Investigation of Warm Mix Asphalt in Texas, Report 0-5597-2, Texas Department of Transportation, Austin, July 2010 [Online]. Available: http://d2dtl5nnlpfr0r. cloudfront.net/tti.tamu.edu/documents/0-5597-2.pdf [accessed Feb. 20, 2015]. American Association of State Highway and Transporta- tion Officials (AASHTO), AASHTO T 321-03, Standard Method of Test for Determining the Fatigue Life of Com- pacted Hot-Mix Asphalt (HMA) Subjected to Repeated Flexural Bending, AASHTO, Washington, D.C., 2003. American Association of State Highway and Transportation Officials (AASHTO), AASHTO M 323-04, Standard Spec- ification for Superpave Volumetric Mix Design, AASHTO, Washington, D.C., 2004. American Association of State Highway and Transporta- tion Officials (AASHTO), AASHTO T 340-10, Standard Method of Test for Determining the Rutting Susceptibility of Hot Mix Asphalt (APA) Using the Asphalt Pavement Analyzer (APA), AASHTO, Washington, D.C., 2010. American Association of State Highway and Transportation Officials (AASHTO), AASHTO T 324-11, Standard Method of Test for Hamburg Wheel-Track Testing of Compacted Hot-Mix Asphalt (HMA), AASHTO, Washington, D.C., 2011. American Association of State Highway and Transporta- tion Officials (AASHTO), AASHTO T 283-14, Standard Method of Test for Resistance of Compacted Asphalt Mix- tures to Moisture-Induced Damage, AASHTO, Washington, D.C., 2014a. American Association of State Highway and Transporta- tion Officials (AASHTO), AASHTO TP 107-14, Stan- dard Method of Determining the Damage Characteristic Curve of Asphalt Mixtures from Direct Tension Cyclic Fatigue Tests, AASHTO, Washington, D.C., 2014b. 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59 http://onlinepubs.trb.org/onlinepubs/circulars/ec189.pdf [accessed Mar. 22, 2015]. Cooper, S., L. Mohammad, and M. Elsefi, “Laboratory Performance of Asphalt Mixtures Containing Recycled Asphalt Shingles,” Journal of the Transportation Research Board: Transportation Research Record No. 2445, Vol. 2, Transportation Research Board of the National Acad- emies, Washington, D.C., 2014, pp. 94–102. Dave, E. and P. Koktan, Synthesis of Performance Test- ing of Asphalt Concrete, Final Report MN/RC 2011-22, Research and Innovation, Office of Policy Analysis, Minnesota Department of Transportation St. Paul, Sept. 2011, 90 pp. [Online]. Available: http://www.its.umn.edu/ Publications/ResearchReports/reportdetail.html?id=2062 [accessed Feb. 20, 2015]. Ellis, S., M. Nunn, and D. Weston, “Development and Per- ceived Benefits of Performance Specifications in the UK,” Permanent International Association of Road Congress, World Road Association–PIARC La Grande Arche, France, July 2002, pp. 68–78. 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60 of the National Academies, Washington, D.C., 2005 [Online]. Available: http://onlinepubs.trb.org/onlinepubs/ nchrp/nchrp_syn_346.pdf [accessed Apr. 27, 2015]. Illinois Department of Transportation (IDOT), Standard Method of Test for Determining Fracture Energy of Asphalt- Aggregate Mixtures Using the Disk-Shaped Compact Tension Geometry, IDOT, Springfield, Sept. 2014. Jeong, M., L. McCarthy, and D. Mensching, “Stochastic Estimation of the In-Place Dynamic Modulus for Asphalt Concrete Pavements,” Journal of Materials in Civil Engineering, ASCE, Vol. 27, No. 6, June 2015, pp. 04014181-1–04014181-9. Johanneck, L., J. Geib, D. Van Deusen, J. Garrity, C. Hanson, and E. Dave, DCT Low Temperature Fracture Testing Pilot Project, Minnesota Department of Transportation Research Services, St. Paul, Feb. 2015. Jones, D., J. Signore, and W. 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TRB's National Cooperative Highway Research Program (NCHRP) Synthesis 492: Performance Specifications for Asphalt Mixtures documents the performance tests used in conjunction with volumetric properties for mixtures. Performance tests are intended to extend service life by guiding material selection and proportions. The synthesis provides examples of engineering tools used in the development and implementation of performance specifications for asphalt mixtures, examples of the contents of performance-based specifications (PBS) currently used or in development, information on test program implementation and research efforts related to PBS for asphalt mixtures, and the reported benefits and challenges with implementing PBS.

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