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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2011. Investigation of Short-Term Laboratory Aging of Neat and Modified Asphalt Binders. Washington, DC: The National Academies Press. doi: 10.17226/14613.
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Page 64
Page 65
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2011. Investigation of Short-Term Laboratory Aging of Neat and Modified Asphalt Binders. Washington, DC: The National Academies Press. doi: 10.17226/14613.
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Page 65

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.

1. Glover, C. J., et al., “Development of Stirred Air Flow Test (SAFT) for Improved HMAC Plant Binder Aging Simulation and Studies of Asphalt Air Blowing,” Report Number FHWA/TX-02/1742-4, Texas Department of Transportation, September 2001. 2. Robertson, R. E., et al., “Fundamental Properties of Asphalts and Modified Asphalts, Volume II: Final Report, New Methods,” FHWA-RD-99-213. U.S. Department of Transportation, FHWA, McLean, VA, 2001. 3. Bahia, H., Christensen, D. W., and Anderson, D. A., “White Paper on Miscellaneous Topics Regarding Aging,” SHRP Research Proj- ect A-002A, Pennsylvania Transportation Institute, 1991. 4. Bell, C. A., “Summary Report on Aging of Asphalt Aggregate Sys- tems,” Report No. SHRP-A-305, Strategic Highway Research Program, National Research Council, Washington, DC, 1989. 5. Julio, D. R., “Asphalt Cement Aging under Accelerated Laboratory and Service Conditions,” submitted in partial fulfillment of the requirements of Master of Science, Pennsylvania State University, University Park, PA, 1991. 6. Christensen, D. W., Pellinen, T., and Bonaquist, R., “Hirsch Model for Estimating the Modulus of Asphalt Concrete,” Journal of the Association of Asphalt Paving Technologists, Vol. 72, 2003. 7. Jones, D. R., “SHRP Materials Reference Library: Asphalt Cements: A Concise Data Compilation,” Report Number SHRP-A-645, Strate- gic Highway Research Program, National Research Council, Wash- ington, DC, 1993. 8. Christensen, D. W. and Bonaquist, R. F., NCHRP Report 567: Volumetric Requirements for Superpave Mix Design, Transportation Research Board, Washington, DC, 2006. 9. Bishara, S. W., and McReynolds, R. L., Transportation Research Record 1488: Effect of Microwave Energy on the Properties of Asphalt and Its Use as an Aging Tool. Transportation Research Board, Washington, DC, 1995. 10. Bishara, S. W., Robertson, R. E., and Mahoney, D., “Rapid Oxidative Aging of Binder Using Microwave Energy: An Improved Method,” 2nd Eurasphalt & Eurobitume Congress, 2000. 11. Bishara, S. W., Robertson, R. E., and Mahoney, D., “Rapid and Sim- ple Method for Binder Oxidative Aging,” Report KS 99-5, Kansas Department of Transportation, Topeka, 1999. 12. Bishara, S. W., et al., “Rapid Microwave Aging of Modified Asphalts,” Transportation Research Board Annual Meeting CD-ROM, Trans- portation Research Board, Washington, DC, 2003. 13. Bishara, S., and McReynolds, R., Transportation Research Record 1535: Laboratory Aging and Annealing of Asphalt Binders by Microwave Radiation, Transportation Research Board, Washington, DC, 1996. 14. Skog, J., “Setting and Durability Studies on Paving Grade Asphalts,” Proceedings of the Association of Asphalt Paving Technologists, Vol. 36, 1967. 15. Griffin, R. L., Miles, T. K., and Penther, C. J. “Microfilm Durabil- ity Test for Asphalt,” Proceedings of the Association of Asphalt Paving Technologists, Vol. 24, 1955. 16. Heithaus, J. J., and Johnson, R. W., “A Microviscometer Study of Road Asphalt Hardening in the Field and Laboratory,” Proceedings of the Association of Asphalt Paving Technologists, Vol. 27, 1958. 17. Halstead, J. and J. A. Zenewitz, “Changes in Asphalt Viscosities Dur- ing the Thin Film Oven and Microfilm Durability Tests,” Special Technical Publication No. 309, ASTM, Philadelphia, PA, 1961. 18. Petersen, J. C., “A Thin Film Accelerated Aging Test for Evaluating Asphalt Oxidative Aging,” Proceedings of the Association of Asphalt Paving Technologists, Vol. 58, 1989. 19. Welborn, J. Y., Transportation Research Record 999: Physical Prop- erties Related to Asphalt Durability: State of the Art, Transportation Research Board, Washington, DC, 1984. 20. Petersen, J. C., Transportation Research Record 999, “Chemical Com- position of Asphalt as Related to Asphalt Durability: State of the Art,” Transportation Research Board, Washington, DC, 1984. 21. Nicholson, V., “A Laboratory Oxidation Test for Asphalt Bitu- mens,” Proceedings of the Association of Asphalt Paving Technolo- gists, Vol. 9, 1937. 22. Rashig, F. L. and Doyle, P. E., “A Laboratory Oxidation Test,” Pro- ceedings of the Association of Asphalt Paving Technologists, Vol. 9, 1937. 23. Skidmore, H. W., “The Effect of Oxidation upon the Ductility of Asphalt Cements,” Proceedings of the Association of Asphalt Paving Technologists, Vol. 12, 1940. 24. Sirin, O., et al., Transportation Research Record 1638, “Develop- ment of a Modified Rotavapor Apparatus and Method for Short- Term Aging of Modified Asphalts,” Transportation Research Board, Washington, DC, 1998. 25. Tia, M., Sirin, O., Shih, C. T., “Development of a Suitable Procedure for Simulating Aging Effects of Hot-Mixing on Modified Asphalts for Use in Superpave Binder Specifications,” Report Number WPI 0510802, Florida Department of Transportation, Tallahassee, 2000. 26. Ramaiah, S. and D’Angelo, J., “Evaluation of Modified German Rotating Flask (MGRF),” presentation at the Symposium on Aging of Asphalt Pavements, 2003 Peterson Asphalt Conference, Laramie, WY, July 16–18, 2003. 27. Sörensen, A., “Long Term Rotating Flask Test,” presentation to Euro- pean Committee for Standardization (CEN) Task Group on Binder Aging (CEN TC336 SG1 TG3), Barcelona, Spain, February 4, 2003. References 64

65 28. Verhasselt, A., “Long-Term Aging—Simulation by RCAT Aging Tests,” Proceedings of the 9th International Conference on Design of Asphalt Pavements, International Society for Asphalt Pavements, Lino Lakes, MN, 2002. 29. Verhasselt, A., and Vanelstraet, A., “Long-Term Aging—Compari- son between PAV and RCAT Aging Tests,” Proceedings of the 2nd Eurasphalt and Eurobitume Congress, Session 1: Performance Testing and Specifications for Binder and Mixtures, Barcelona, Spain, 2000. 30. Verhasselt, A., “Short- and Long-Term Aging of Bituminous Binders—Simulation with the RCAT Method,” Performance Testing and Evaluation of Bituminous Materials, PTEBM’03, Proceedings of the 6th International RILEM Symposium, RILEM, Bagneux, France, 2003. 31. Glover, C. J., Davison, R. R., and Purveshkumar, S. V., “Pilot Implementation of New Binder Aging Simulation Equipment,” Report Number FHWA/TX-02/1742-imp-S, Texas Department of Transportation, July 2002 32. ASTM, Designation E 1169-02, Standard Guide for Conduc- tion Ruggedess Tests, Annual Book of ASTM Standards, Vol. 14.02. 33. Christensen, D. W. and Anderson, D. A., “Interpretation of Dyna- mic Mechanical Test Data for Paving Grade Asphalt,” Journal of the Association of Asphalt Paving Technologists, Vol. 61, 1992. 34. Bonaquist, R., NCHRP Report 614: Refining the Simple Performance Tester for Use in Routine Practice, Transportation Research Board, Washington, DC, 2008. 35. ARA, Inc., ERES Consultants Division, “Guide for Mechanistic- Empirical Design of New and Rehabilitated Pavement Structures,” Final Report prepared for NCHRP, March 2004.

Next: Appendixes A through E »
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TRB’s National Cooperative Highway Research Program (NCHRP) Report 709: Investigation of Short-Term Laboratory Aging of Neat and Modified Asphalt Binders provides a proposed method of testing for short-term laboratory aging of neat and modified asphalt binders using the modified German rotating flask as an alternative to the rolling thin film oven test.

The following appendixes A-E to NCHRP Report 709 are only available in electronic format:

Appendix A: Binder Aging Bibliography

Appendix B: Selection Study Report

Appendix C: Volatile Collection System Study Report

Appendix D: SAFT Optimization Study Report

Appendix E: Verification Study Report

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