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SUSTAINABLE PAVEMENTS: AN ANALYSIS OF THE CRACKS WIDTH IN JOINTED PLAIN CONCRETE PAVEMENTS WITH SHORT SLABS

Mauricio Pradena / Lambert Houben

First published: 2014-06-20https://doi.org/10.5593/sgem2014/b62/s26.045View metrics

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  • CrossRef - Citation Indexes: 4
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Publication details

Title
SUSTAINABLE PAVEMENTS: AN ANALYSIS OF THE CRACKS WIDTH IN JOINTED PLAIN CONCRETE PAVEMENTS WITH SHORT SLABS
Authors
Mauricio Pradena / Lambert Houben
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 14th SGEM GeoConference on NANO, BIO AND GREEN TECHNOLOGIES FOR A SUSTAINABLE FUTURE
Publisher
Stef92 Technology
Year
2014
Pages
Not available yet
ISSN
1314-2704
ISBN
978-619-7105-21-6
Language
en
Publication type
Conference Paper
References26
  1. Roesler J.R. Thinner Concrete Pavement Technologies. National Concrete Consortium Presentation, US, 2013.

  2. Covarrubias J.P. TCP Design (Thin Concrete Pavement). World Bank Presentation, US, 2008.

  3. Houben, L.J.M. Model for Transversal Cracking in Non-Jointed Plain Concret e Pavements as a Function of the Temperature Variations and the Time of Construction, 7th International DUT-Workshop on Design and Performance of Sustainable and Durable Concrete Pavement, Spain, 2010.

  4. Houben, L.J.M. Transversal Cracking in Jointed Plain Concrete Pavements for Dutch Climatic Conditions. 7 th International DUT-Workshop on Design and Performance of Sustainable and Durable Concrete Pavement, Spain, 2010.

  5. Eurocode 2. Design and Calculation of concrete structures – Part 1-1: General rules and rules for buildings (in Dutch), Netherlands standard NEN-EN 1992-1-1 (en), 2005.

  6. Pradena M.A. & Houben, L.J.M. Early age deformation and internal stresses in jointed plain concrete pavements for Dutch conditions. 2 nd International Conference on Microstructural-related Durability of Cementitious Composites, the Netherlands, 2012.

  7. Pradena, M.A. & Houben, L.J.M. The Effects of the Material Behavior in the Medium and Long Term Performance of Jointed Plain Concrete Pavements. 3 rd Workshop on Innovations and Modeling for Sustainable and Resilient Concrete Pavements, Canada, 2012.

  8. AASHTO. AASHTO guide for design of pavement structures, U.S., 1993.

  9. NCHRP. Guide for Mechanistic-Empirical Design of New and Rehabilitated Pavement Structures. Final Document, NCHRP Project 1-37A, Transportation Research Board, National Research Council, U.S., 2003

  10. Davids W.G. & Mahoney J.P. Experimental Verification of Rigid Pavement Joint Load Transfer Modeling with EverFE. Transportation Research Record 1 684, USA, pp. 81-89, 1999.

  11. Colley, B. E. & H. M. Humphrey. Aggregate Interlock at Joints in Concrete Pavements. Bulletin 189, HRB, National Research Council, US, pp. 1–18, 1967.

  12. Roesler J.R., Cervantes V.G. & Amirkhanian A.N. Accelerated Performance Testing of Concrete Pavement with Short Slabs, International Journal of Pavement Engineering, US, vol.13/issue 6, pp 494-507, 2012.

  13. Salgado M. Analysis and Prediction of the Behaviour of Semi-Rigid Short Slabs Concrete Pavements (in Spanish). International Seminar Latest Advances in Design and Construction of Concrete Pavements, Argentina, 2011.

  14. Roesler J.R. Thinner Concrete Pavement Technologies. National Concrete Consortium Presentation, US, 2013.

  15. Covarrubias J.P. TCP Design (Thin Concrete Pavement). World Bank Presentation, US, 2008.

  16. Houben, L.J.M. Model for Transversal Cracking in Non-Jointed Plain Concret e Pavements as a Function of the Temperature Variations and the Time of Construction, 7th International DUT-Workshop on Design and Performance of Sustainable and Durable Concrete Pavement, Spain, 2010.

  17. Houben, L.J.M. Transversal Cracking in Jointed Plain Concrete Pavements for Dutch Climatic Conditions. 7 th International DUT-Workshop on Design and Performance of Sustainable and Durable Concrete Pavement, Spain, 2010.

  18. Eurocode 2. Design and Calculation of concrete structures – Part 1-1: General rules and rules for buildings (in Dutch), Netherlands standard NEN-EN 1992-1-1 (en), 2005.

  19. Pradena M.A. & Houben, L.J.M. Early age deformation and internal stresses in jointed plain concrete pavements for Dutch conditions. 2 nd International Conference on Microstructural-related Durability of Cementitious Composites, the Netherlands, 2012.

  20. Pradena, M.A. & Houben, L.J.M. The Effects of the Material Behavior in the Medium and Long Term Performance of Jointed Plain Concrete Pavements. 3 rd Workshop on Innovations and Modeling for Sustainable and Resilient Concrete Pavements, Canada, 2012.

  21. AASHTO. AASHTO guide for design of pavement structures, U.S., 1993.

  22. NCHRP. Guide for Mechanistic-Empirical Design of New and Rehabilitated Pavement Structures. Final Document, NCHRP Project 1-37A, Transportation Research Board, National Research Council, U.S., 2003

  23. Davids W.G. & Mahoney J.P. Experimental Verification of Rigid Pavement Joint Load Transfer Modeling with EverFE. Transportation Research Record 1 684, USA, pp. 81-89, 1999.

  24. Colley, B. E. & H. M. Humphrey. Aggregate Interlock at Joints in Concrete Pavements. Bulletin 189, HRB, National Research Council, US, pp. 1–18, 1967.

  25. Roesler J.R., Cervantes V.G. & Amirkhanian A.N. Accelerated Performance Testing of Concrete Pavement with Short Slabs, International Journal of Pavement Engineering, US, vol.13/issue 6, pp 494-507, 2012.

  26. Salgado M. Analysis and Prediction of the Behaviour of Semi-Rigid Short Slabs Concrete Pavements (in Spanish). International Seminar Latest Advances in Design and Construction of Concrete Pavements, Argentina, 2011.

Citing literature

Number of times cited according to Crossref: 4

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