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Evaluation of Rapid Repair of Concrete Pavements Using Precast Concrete Technology: A Sustainable and Cost-Effective Solution


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1. Silfwerbrand J: “The Advantages of Concrete Pavements in Tunnels. Proceedings, 12th International Symposium on Concrete Roads, Prague, 2014. Search in Google Scholar

2. Silfwerbrand J: “Not concrete or asphalt but concrete and asphalt- A discussion based on Swedish pavements”. Proceedings, 11th International Conference on Concrete Pavements, San Antonio, Texas, USA, August 28-31, 2016, pp. 609-619. Search in Google Scholar

3. Strömberg L.: “Making Concrete Pavements Competitive by Using the Standardized Framework for Comparisons of Infrastructure Projects in Terms of Cost-Efficiency and Climate Impact”. Nordic Concrete Research, Vol. 62, No. 1, 2020, pp. 21-39.10.2478/ncr-2020-0004 Search in Google Scholar

4. Tayabji S, Ye D & Buch N: “Precast Concrete Pavements: Technology Overview and Technical Considerations”. PCI journal, Vol. 58, No. 1, 2013.10.15554/pcij.01012013.112.128 Search in Google Scholar

5. Petersson Ö & Sundbom S: “Uppföljning av betongvägen Heberg-Långås, byggnadsrapport 1993 - Betongmaterial och fogar”. (“Documentation of the concrete road Heberg-Långås, construction report 1993 - Concrete materials and joints”). CBI Commission Report, Swedish Cement & Concrete Research Institute, Stockholm, 1994. (In Swedish). Search in Google Scholar

6. Kohler E, Du Plessis L, Harvey J & Motumah L: “Comparison of Precast and Cast-in-Place Concrete Pavements Responses under Heavy Vehicle Simulator Loads”. Proceedings, 8th International Conference (BCR2A’09), Univ. of Illinois at Urbana-Champaign, Champaign,, 2009.10.1201/9780203865286.ch147 Search in Google Scholar

7. Olidis C, Swan D.J, Saeed A, Mellerski C.R & Hammons M. I: “Precast Slab Literature Review Report: Repair of Rigid Airfield Pavements Using Precast Concrete Panels-A State-of-the-Art Review”, 2010.10.21236/ADA546971 Search in Google Scholar

8. Tayabji S, Ye D & Buch N: “Performance of precast concrete pavements”. Proceedings, First Congress of Transportation and Development Institute, Chicago, Illinois, USA, 2011.10.1061/41167(398)86 Search in Google Scholar

9. Tomek R.: “Advantages of precast concrete in highway infrastructure construction”. Procedia engineering, Vol. 196, 2017, pp. 176-180.10.1016/j.proeng.2017.07.188 Search in Google Scholar

10. Tayabji S: “Precast Concrete Pavement Practices Overview”. Proceedings, Indiana DOT Precast Concrete Pavement Forum, Indianapolis, Indiana, USA, August 11, 2016.10.5703/1288284316189 Search in Google Scholar

11. Singh A & Ray D.S: “Study and Evaluation of Precast Concrete Pavement”. International Journal of Engineering Science and Computers, 2019. Search in Google Scholar

12. Federal Highway Administration (FHWA),”State-of-the-Art Report on Precast Concrete Pavements”, Chicago, Illinois, USA, 2012, pp (1-2)-(1-6). Search in Google Scholar

13. Tayabji S, Buch N & Kohler E: “Precast Concrete Pavements: Current Technology and Future Directions”. Proceedings, 9th International Conference on Concrete Pavements International Society for Concrete Pavements, San Francisco, California, USA, 2008. Search in Google Scholar

14. Tayabji S, Buch N & Kohler E: “Precast concrete pavement for intermittent concrete pavement repair applications”. Proceedings, National conference on preservation, repair, and rehabilitation of concrete pavements, St. Louis, Missouri, USA, 2009. Search in Google Scholar

15. Tayabji S: “Precast Concrete Pavement Technology (Desk Scan, American Trade Initiatives)”, U.S. Department of Transportation, Federal Highway Administration, American Association of State Highway and Transportation, Washington, D.C., USA, 2010. Search in Google Scholar

16. Mallick Rajib B & El-Korchi T: “Pavement Engineering: Principles and Practice”. 3rd ed, 2018. CRC Press, pp. 549-554.10.1201/9781315119205-18 Search in Google Scholar

17. Tayabji S, Ye D & Buch N: “Joint Load Transfer and Support Considerations”. SHRP 2 Report S2-R05-RR-1: Precast Concrete Pavement Technology, 2012.10.3141/2305-08 Search in Google Scholar

18. Tayabji S: “Jointed Precast Concrete Pavement: Design, Specification, and Installation”, 2020.10.1061/9780784482469.038 Search in Google Scholar

19. Smith P & Snyder M. B: “Manual for Jointed Precast Concrete Pavement”, NPCA Manual for Jointed Precast Concrete, 3rd ed, 2019. Search in Google Scholar

20. Merritt D.K, McCullough B.F & Burns N.H:”Precast Prestressed Concrete Pavement Pilot Project near Georgetown, Texas”. Transportation research record, Vol. 1823, No. 1, 2003, pp. 11-17.10.3141/1823-02 Search in Google Scholar

21. Novak J, Kohoutková A, Křístek, V & Vodička J: “Precast concrete pavement–systems and performance review”. Proceedings, IOP Conference Series: Materials Science and Engineering. 2017, IOP Publishing.10.1088/1757-899X/236/1/012030 Search in Google Scholar

22. Super-slab http://www.super-slab.com/ Search in Google Scholar

23. Priddy L.P: “Evaluation of Precast Portland Cement Concrete Panels for Airfield Pavement Repairs”. Virginia Polytechnic Institute and State University, Blacksburg, USA, 2014.10.3141/2456-05 Search in Google Scholar

24. Tayabji S & Ye D: “Precast Concrete Pavement Innovation, Performance and Best Practices”. Proceedings, 12th International Symposium on Concrete Roads, Prague, Czech Republic, 2014. Search in Google Scholar

25. Buch N, Barnhart V & Kowli R: “Precast Concrete Slabs as Full-Depth Repairs: Michigan experience”. Transportation research record, Vol. 1823, No. 1, 2003, pp. 55-63.10.3141/1823-07 Search in Google Scholar

26. Tayabji S: “Precast Concrete Pavement Technology Implementation”, Federal Highway Administration. Office of Infrastructure, Washington, D.C., USA, 2019.10.1061/9780784482469.038 Search in Google Scholar

27. Tayabji S & Tyson S: “Precast Concrete Pavement Innovations: Performance and Best Practices”. Conference Paper, 2014. Search in Google Scholar

28. Tayabji S & Brink W: “Precast Concrete Pavement Bedding Support Systems: [techbrief]”. Federal Highway Administration, Washington, D.C., USA, 2015. Search in Google Scholar

29. Tayabji S: “Guide Specification for Jointed Precast Concrete Pavement Introduction [techbrief]”. Federal Highway Administration, Washington, D.C., USA, 2019.10.1061/9780784482469.038 Search in Google Scholar

30. Tayabji S: “Overview of Precast Concrete Pavement Practices & Recent Innovations”. Proceedings, American Concrete Institute Spring Convention, Milwaukee, Wisconsin, USA, 2016.10.5703/1288284316189 Search in Google Scholar

31. Tayabji, S & Brink W: “Load Transfer Systems for Jointed Precast Concrete Pavements”. Federal Highway Administration, Washington, D.C., USA, 2015. Search in Google Scholar

32. Federal Highway Administration (FHWA), “Technical Advisory of Concrete Pavement Joints”, T 5040.30, Washington, D.C., USA, 2019. Search in Google Scholar

33. AB Svensk Byggtjänst :”Betong på mark (Handbok)”. (“Concrete slabs on grade [Handbook]”), 2002, Stockholm, Sweden, 253 pp. (In Swedish). Search in Google Scholar

34. Tayabji S: “Honolulu Interstate H1 Precast Concrete Pavement Demonstration Project”, United States, Federal Highway Administration, Washington, D.C., USA, 2016.10.5703/1288284316189 Search in Google Scholar

35. Senseney, C.T, Smith P.J & Snyder M.B: “Precast Concrete Paving Repairs at Vancouver International Airport”. Transportation Research Record, 2021.10.1177/03611981211002518 Search in Google Scholar

36. Priddy L.P, Bly P.G, Jackson C.J & Flintsch G.W: “Full-scale field testing of precast Portland cement concrete panel airfield pavement repairs”, International Journal of Pavement Engineering, Vol. 15, No. 9, 2014, pp. 840-853.10.1080/10298436.2014.893320 Search in Google Scholar

37. Airbus: A380 : https://www.airbus.com/aircraft/passenger-aircraft/a380/innovation.html. Search in Google Scholar

38. Aircraft C-17: https://www.theaviationzone.com/factsheets/c17_specs.asp. Search in Google Scholar

eISSN:
2545-2819
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
2 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Materialwissenschaft, Materialverarbeitung