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Cold Recycling of Asphalt Pavement - U.S. 24, Project CX-04-0024-25

Cold Recycling of Asphalt Pavement - U.S. 24, Project CX-04-0024-25
Author: Donna S. Harmelink
Publisher:
Total Pages: 86
Release: 1990
Genre: Pavements
ISBN:

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The objective of this study was to evaluate the cold-recycling process and to determine the effectiveness of the three types of rejuvenating agents used in the cold-recycle mix. Additionally, two types of covers were used and were compared to determine their ability to seal the cold-recycled pavement. The study has shown cold-recycling to be an effective and valuable method for rehabilitating asphalt pavements and retarding reflective cracking.


Cold Recycling

Cold Recycling
Author: Steve Beckett
Publisher:
Total Pages: 56
Release: 1979
Genre: Pavements, Asphalt
ISBN:

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Cold Recycling Asphalt Pavement

Cold Recycling Asphalt Pavement
Author: Ronald I. Frascoia
Publisher:
Total Pages: 38
Release: 1979
Genre: Pavements, Asphalt concrete
ISBN:

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Report on Cold Recycling of Asphalt Pavements

Report on Cold Recycling of Asphalt Pavements
Author:
Publisher:
Total Pages: 54
Release: 1998
Genre: Pavements
ISBN:

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The responsibility of Task Force No. 38 was defined to be as follows: The Task Force would address the cold processing of reclaimed asphalt pavement (RAP) with or without additional additives and/or aggregates to create a rehabilitated component of the pavement structure. This report contains information on the cold recycling process, project selection and assessment, cold recycled mixture and pavement structural design, quality control and testing, guidelines for construction specifications and definitions of terms.


An Introduction to Cold Recycling of Asphalt Concrete Pavement for Professional Engineers

An Introduction to Cold Recycling of Asphalt Concrete Pavement for Professional Engineers
Author: J. Paul Guyer
Publisher: Guyer Partners
Total Pages: 32
Release: 2022-12-27
Genre: Technology & Engineering
ISBN:

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Introductory technical guidance for civil engineers and other professional engineers and construction managers interested in cold recycling of asphalt concrete pavement. Here is what is discussed: 1. INTRODUCTION, 2. BACKGROUND, 3. INITIAL PROJECT SELECTION CRITERIA, 4. TRAFFIC, 5. STRUCTURAL ASSESSMENT, 6. OVERLAY THICKNESS DESIGN, 7. INITIAL STRUCTURAL SUPPORT, 8. PROJECT LENGTH, 9. CURING, 10. UTILITIES, 11. SURFACE TREATMENTS, 12. PAVING FABRICS, GEOSYNTHETICS AND CRACK SEAL, 13. PATCHES, 14. FINAL PROJECT SELECTION, 15. ECONOMIC ASSESSMENT, 16. SUMMARY, 17. SIGNIFICANT IN-PLACE RECYCLING RESOURCES, 18. REFERENCES.


Cold-recycled Bituminous Concrete Using Bituminous Materials

Cold-recycled Bituminous Concrete Using Bituminous Materials
Author: Jon A. Epps
Publisher: Transportation Research Board
Total Pages: 116
Release: 1990
Genre: Technology & Engineering
ISBN: 9780309049115

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This synthesis will be of interest to pavement designers, construction engineers, and others interested in economical methods for reconstructing or rehabilitating bituminous pavements. Information is provided on the processes and procedures used by a number of states to recycle asphalt pavements in place without application of heat. Since 1975 a growing number of state highway agencies have reconstructed or rehabilitated asphalt pavements by recycling the old pavement in place. This report of the Transportation Research Board describes the processes used for cold in-place recycling, including construction procedures, mix designs, mixture properties, performance, and specifications.


An Introduction to Cold Recycling of Asphalt Concrete Pavement

An Introduction to Cold Recycling of Asphalt Concrete Pavement
Author: J. Paul Guyer, P.E., R.A.
Publisher: Guyer Partners
Total Pages: 26
Release: 2020-12-23
Genre: Technology & Engineering
ISBN:

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Introductory technical guidance for civil engineers and construction managers interested in cold recycling of asphalt concrete pavement for streets and highways. Here is what is discussed: 1. INTRODUCTION 2. BACKGROUND 3. INITIAL PROJECT SELECTION CRITERIA 4. TRAFFIC 5. STRUCTURAL ASSESSMENT 6. OVERLAY THICKNESS DESIGN 7. INITIAL STRUCTURAL SUPPORT 8. PROJECT LENGTH 9. CURING 10. UTILITIES 11. SURFACE TREATMENTS 12. PAVING FABRICS, GEOSYNTHETICS AND CRACK SEAL 13. PATCHES 14. FINAL PROJECT SELECTION 15. ECONOMIC ASSESSMENT 16. SUMMARY 17. SIGNIFICANT IN-PLACE RECYCLING RESOURCES.