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Research and Application of Hot In-Place Recycling Technology for Asphalt Pavement

Research and Application of Hot In-Place Recycling Technology for Asphalt Pavement
Author: Banting W.P. Sze
Publisher: Woodhead Publishing
Total Pages: 457
Release: 2020-11-12
Genre: Technology & Engineering
ISBN: 0128224371

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Research and Application of Hot In-Place Recycling Technology for Asphalt Pavement is the first comprehensive book on the topic that presents over two decades of theoretical and practical experience gained in China. The book gives comprehensive coverage of HIPR, including pavement evaluation, distress analysis, mix design, processes and equipment selection, implementation and acceptance criteria. In eight chapters, this book covers HIPR from theoretical and practical viewpoints, and provides detailed case-studies based on real-world experience. This book includes everything engineers need to apply HIPR to improve sustainability and reduce disruption during the maintenance and repair of asphalt. Presents, for the first time in English, decades of experience and research on Hot in-Place Recycling Technology (HIPR) for asphalt pavements Considers all aspects of HIPR, giving engineers all they need to use the technique for road maintenance and repair Details how HIPR drastically improves the sustainability of asphalt and reduces disruption to traffic during repair and maintenance work Includes detailed case studies from thirty years of HIPR in China, giving context and practical know-how


Hot In-Place Recycling of Asphalt Pavements

Hot In-Place Recycling of Asphalt Pavements
Author: Michael Lawrence Dowdy
Publisher:
Total Pages: 110
Release: 1987
Genre:
ISBN:

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The purpose of this report is to identify factors to consider in selecting a hot in-place recycling project for asphalt pavements. This type of asphalt pavement recycling process is becoming very popular. This report discusses the different types of recycling processes and several selected hot in-place recycling processes that are becoming so popular today. The types of asphalt pavement distress and their causes are discussed to provide a working knowledge of possible applications for this process. Discussions on project selection, design, and construction considerations will also provide an awareness of considerations relative to this type of asphalt pavement rehabilitation. An understanding of these topics will be helpful when selecting hot in-place recycling. The information that this report is based upon was obtained from various sources. A literature search included technical reports, periodicals, and advertisements. Personal contact was made in the form of interviews with a number of representatives in the industry and on site inspection of Cutler Repaving, Inc. and Remixer Contracting Co., Inc. operations.


Hot In-place Recycling of Asphalt Concrete

Hot In-place Recycling of Asphalt Concrete
Author: Joe W. Button
Publisher:
Total Pages: 80
Release: 1994
Genre: Pavements, Asphalt concrete
ISBN:

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This synthesis will be of interest to administrators, pavement designers, highway, material, research, and specification engineers, and others interested in economical methods for reconstructing or rehabilitating asphalt concrete pavements. It describes the processes and equipment used for hot in-place recycling of asphalt concrete and provides information on mix designs, performance, and guidelines for its effective use. A significant amount of the information provided is based on the current practices of state highway agencies. As such, numerous case histories are included in the report.


Eco-efficient Pavement Construction Materials

Eco-efficient Pavement Construction Materials
Author: Fernando Pacheco-Torgal
Publisher: Woodhead Publishing
Total Pages: 422
Release: 2020-01-18
Genre: Technology & Engineering
ISBN: 0128189827

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Eco-efficient Pavement Construction Materials acquaints engineers with research findings on new eco-efficient pavement materials and how they can be incorporated into future pavements. Divided into three distinctive parts, the book emphasizes current research topics such as pavements with recycled waste, pavements for climate change mitigation, self-healing pavements, and pavements with energy harvesting potential. Part One considers techniques for recycling, Part Two reviews the contribution of pavements for climate change mitigation, including cool pavements, the development of new coatings for high albedo targets, and the design of pervious pavements. Finally, Part Three focuses on self-healing pavements, addressing novel materials and design and performance. Finally, the book discusses the case of pavements with energy harvesting potential, addressing different technologies on this field. Offers a clear and concise lifecycle assessment of asphalt pavement recycling for greenhouse gas emission with temporal aspects Applies key research trends to green the pavement industry Includes techniques for recycling waste materials, the design of cool pavements, self-healing mechanisms, and key steps in energy harvesting


Superpave Mix Design

Superpave Mix Design
Author: Asphalt Institute
Publisher:
Total Pages: 102
Release: 2001-01-01
Genre: Asphalt
ISBN: 9781934154175

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Recycling and Reclamation of Asphalt Pavements Using In-Place Methods

Recycling and Reclamation of Asphalt Pavements Using In-Place Methods
Author: Mary Stroup-Gardiner
Publisher: Transportation Research Board National Research
Total Pages: 70
Release: 2011-01-01
Genre: Pavements, Asphalt
ISBN: 9780309143448

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TRB’s National Cooperative Highway Research Program (NCHRP) Synthesis 421: Recycling and Reclamation of Asphalt Pavements Using In-Place Methods discusses the use of hot in-place recycling, cold in-place recycling, and full-depth reclamation of asphalt pavements.


New Developments in Hot In-place Recycling of Asphalt Pavements

New Developments in Hot In-place Recycling of Asphalt Pavements
Author:
Publisher:
Total Pages:
Release: 1997
Genre:
ISBN:

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Recycling of asphalt pavements has become a widely accepted practice, particularly in North America and Europe. Several technologies have emerged to fill the various rehabilitation needs, depending on local conditions, type of pavement, and the future use of the roadway. Both hot and cold recycling in a central plant are routinely practiced. Cold in-place recycling (CIR) and full depth reconstruction is used by many highway agencies to restore surfaces and stabilize existing roadways for future overlays. Hot in-place recycling (HIR) has been used sparingly during the past 50 years, and only since the late 1980s have acceptable processes and equipment been developed. Much of the technolgical development, experience, and HIR technology has occurred in Canada, where highway agencies have embraced the concept and equipment manufacturers have provided innovations. The paper briefly describes the development and special characteristics of the various HIR processes. It describes the development of a new heating system that combines recirculating hot air with low-level indirect infrared components. In addition, a stirring mechanism has been incorporated in the heating system to ensure more uniform heating of the loose asphalt mixture and efficient removal of any moisture. The recirculated hot air is reheated, and then incinerated, thereby providing a significant improvement in air quality compared to previous generations of HIR equipment. The data from early trials in British Columbia, Canada show that the productivity is increased and the quality of recycled pavement is improved. In recent years air quality has been a factor in the acceptance of HIR in North America. Monitoring of the quality of air released at the new heating system shows the particulate matter and other solids to be the lowest among HIR systems tested. Additional projects are currently underway in Europe using the latest version of this equipment that was developed by Martec Recycling Corporation and these may provide additional data for the presentation. For the covering abstract of this conference see IRRD number 872978.