Comparing Cold In-place Recycling (CIR) and Cold In-place Recycling with Expanded Asphalt Mixture (CIREAM)

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Total Pages : 134 pages
Book Rating : 4.:/5 (926 download)

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Book Synopsis Comparing Cold In-place Recycling (CIR) and Cold In-place Recycling with Expanded Asphalt Mixture (CIREAM) by : Janki Bhavsar

Download or read book Comparing Cold In-place Recycling (CIR) and Cold In-place Recycling with Expanded Asphalt Mixture (CIREAM) written by Janki Bhavsar and published by . This book was released on 2015 with total page 134 pages. Available in PDF, EPUB and Kindle. Book excerpt: Cold Mix Asphalt (CMA) is used in several rehabilitation techniques, which uses 100% Reclaimed Asphalt Pavement (RAP), thus making it a sustainable product in the industry. Using CMA for rehabilitation decreases the energy consumption and greenhouse gas emissions. In Ontario, it has been implemented over the past 17 years. There are two main techniques used for CMA: Cold In-Place Recycling (CIR) and Cold In-Place Recycling with Expanded Asphalt Mixture (CIREAM). It is necessary to determine the performance of these techniques in order to determine the age of the pavement and expand their applications. There is a lack of laboratory and field performance information in Ontario for these two techniques. Thus, in this study, laboratory investigation was carried out to establish and compare the material performance of CIR and CIREAM. In addition, a field study was conducted which involved the evaluation of several road sections which have used CIR and CIREAM techniques. For this project, the test material was collected from road sections in Ontario, thus, this study was focused on CIR and CIREAM applications in Ontario and tests were based on standards followed by the province. Although the study was conducted for Ontario, the methodology may be applied outside of Ontario with similar climate conditions. However, the results would vary based on the type of material used. The laboratory study included testing for the overall stiffness, tensile strength, and fatigue behavior of the test samples to simulate their long-term performance. RAP was extracted from southern and northern parts of Ontario to make the test samples. A curing duration test was conducted using the dynamic modulus test apparatus. This test was done to determine a curing time of CIR samples in the laboratory which provided the best stiffness. For the stiffness test, sample mixes were constructed with varying percentages of asphalt cement (AC). From these mixes, the best performing mix was chosen based on its workability, rutting resistance and overall stiffness. The fatigue and tensile strength tests were conducted using the optimal mix chosen from the stiffness test and the samples were cured according to the results from the curing duration test. From the curing duration test, it was concluded that curing the CIR samples for 14 days after compaction gave a higher stiffness to the mix. For the CIR mixes using southern Ontario RAP, the mix with 3.2%AC performed well in comparison to the other mixes. The CIREAM mixes with varying percentages of AC had an overall similar performance. The fatigue testing showed that both CIR and CIREAM samples had similar fatigue resistance. The TSRST tests showed that CIR samples exhibited more shrinkage in comparison to CIREAM and they had higher tensile stresses at failure. The dynamic modulus testing of the CIR samples using northern Ontario RAP showed no statistically significant differences between the mixes. The gradation of the RAP used had a large impact on the stiffness and workability of the sample mixes and their performance. The field study included road sections with varying roadway and pavement attributes. Data was collected from various municipalities which included the City of Waterloo, County of Peterborough, Region of Northumberland, York Region, Haldimand County, County of Perth, County of Wellington, and the united counties of Stormont, Dundas and Glengarry, along with the Ministry of Transportation Ontario (MTO). This data highlighted the limits of all road sections which had implemented CIR or CIREAM within the municipalities. Approximately 200 road sections were identified which had used CIR or CIREAM techniques. These sections were visually inspected in three different municipalities; specifically the City of Waterloo, Perth County, and the united counties of Stormont, Dundas and Glengarry. From the visual inspections large amounts of deteriorations were observed where greater number of trucks, poor drainage and low speeds were prevalent. Field data evaluation showed no significant effect on physical condition, PCI or rut depth of the roadway due to age, AADT or AADTT, respectively. To date, these techniques are used on low volume roadways but there is also an opportunity to expand to higher volume roadways to promote sustainable use of recycled asphalt. These techniques are sustainable due to their use of 100% recycled aggregates and low energy consumption. Thus, by closing the research gap on their performance information, it would help broaden their application.

COLD IN-PLACE RECYCLING WITH EXPANDED ASPHALT MIX (CIREAM).

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Total Pages : pages
Book Rating : 4.:/5 (13 download)

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Book Synopsis COLD IN-PLACE RECYCLING WITH EXPANDED ASPHALT MIX (CIREAM). by : Samuel Abiodun

Download or read book COLD IN-PLACE RECYCLING WITH EXPANDED ASPHALT MIX (CIREAM). written by Samuel Abiodun and published by . This book was released on 2014 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Specification Recommendations for Cold-in-place Recycling Mixtures

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (131 download)

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Book Synopsis Specification Recommendations for Cold-in-place Recycling Mixtures by : Soohyok Im

Download or read book Specification Recommendations for Cold-in-place Recycling Mixtures written by Soohyok Im and published by . This book was released on 2021 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: An extensive literature review on cold in-place recycling (CIR) mixture designs and requirements along with laboratory testing and pavement performance prediction was conducted in this project. Based on the findings and results from prior tasks, this document shows the recommended CIR mixture design requirements, and the recommended mixture testing for quality control, respectively. While this project's activities focused primarily on materials for CIR, based on the literature and the findings in this project, it should also be appropriate for cold central plant recycled mixtures.

Cold In-place Recycling and Full-depth Recycling with Asphalt Products (CIR&FDRwAP)

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ISBN 13 :
Total Pages : 28 pages
Book Rating : 4.:/5 (352 download)

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Book Synopsis Cold In-place Recycling and Full-depth Recycling with Asphalt Products (CIR&FDRwAP) by : Marshall R. Thompson

Download or read book Cold In-place Recycling and Full-depth Recycling with Asphalt Products (CIR&FDRwAP) written by Marshall R. Thompson and published by . This book was released on 2009 with total page 28 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Practice and Performance of Cold In-place Recycling and Cold Central Plant Recycling

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ISBN 13 : 9780309674188
Total Pages : 0 pages
Book Rating : 4.6/5 (741 download)

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Book Synopsis Practice and Performance of Cold In-place Recycling and Cold Central Plant Recycling by : Mary Stroup-Gardiner

Download or read book Practice and Performance of Cold In-place Recycling and Cold Central Plant Recycling written by Mary Stroup-Gardiner and published by . This book was released on 2021 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Cold in-place recycling (CIR) is a process in which 3 to 4 inches of the existing asphalt pavement layers are pulverized, mixed with a recycling agent, and repaved in place. It provides agencies with cost-effective and environmentally friendly pavement maintenance and rehabilitation options for aged asphalt pavements. The TRB National Cooperative Highway Research Program's NCHRP Synthesis 569: Practice and Performance of Cold In-Place Recycling and Cold Central Plant Recycling compiles and documents information regarding the current state of practice on how CIR and cold central plant recycling (CCPR) technologies are selected, designed, constructed, and evaluated by state departments of transportation (DOTs).

In-depth Study of Cold In-place Recycled Pavement Performance: Construction and inspection manual

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ISBN 13 :
Total Pages : 58 pages
Book Rating : 4.:/5 (1 download)

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Book Synopsis In-depth Study of Cold In-place Recycled Pavement Performance: Construction and inspection manual by : Todd V. Scholz

Download or read book In-depth Study of Cold In-place Recycled Pavement Performance: Construction and inspection manual written by Todd V. Scholz and published by . This book was released on 1990 with total page 58 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Evaluation of Long-term Field Performance of Cold In-place Recycled Roads

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ISBN 13 :
Total Pages : 40 pages
Book Rating : 4.:/5 (1 download)

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Book Synopsis Evaluation of Long-term Field Performance of Cold In-place Recycled Roads by :

Download or read book Evaluation of Long-term Field Performance of Cold In-place Recycled Roads written by and published by . This book was released on 2007 with total page 40 pages. Available in PDF, EPUB and Kindle. Book excerpt: Cold in-place recycling (CIR) has become an attractive method for rehabilitating asphalt roads that have good subgrade support and are suffering distress related to non-structural aging and cracking of the pavement layer. Although CIR is widely used, its use could be expanded if its performance were more predictable. Transportation officials have observed roads that were recycled under similar circumstances perform very differently for no clear reason. Moreover, a rational mix design has not yet been developed, design assumptions regarding the structural support of the CIR layer remain empirical and conservative, and there is no clear understanding of the cause-effect relationships between the choices made during the design/construction process and the resulting performance. The objective of this project is to investigate these relationships, especially concerning the age of the recycled pavement, cumulative traffic volume, support conditions, aged engineering properties of the CIR materials, and road performance. Twenty-four CIR asphalt roads constructed in Iowa from 1986 to 2004 were studied: 18 were selected from a sample of roads studied in a previous research project (HR-392), and 6 were selected from newer CIR projects constructed after 1999. This report summarizes the results of a comprehensive program of field distress surveys, field testing, and laboratory testing for these CIR asphalt roads. The results of this research can help identify changes that should be made with regard to design, material selection, and construction in order to lengthen the time between rehabilitation cycles and improve the performance and cost-effectiveness of future recycled roads.

Current Practice of Cold In-place Recycling (CIR) of Asphalt Pavements

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ISBN 13 :
Total Pages : 50 pages
Book Rating : 4.:/5 (175 download)

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Book Synopsis Current Practice of Cold In-place Recycling (CIR) of Asphalt Pavements by : Leonard E. Wood

Download or read book Current Practice of Cold In-place Recycling (CIR) of Asphalt Pavements written by Leonard E. Wood and published by . This book was released on 1988 with total page 50 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Evaluation of Cold In-place Recycling

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ISBN 13 :
Total Pages : 190 pages
Book Rating : 4.:/5 (331 download)

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Book Synopsis Evaluation of Cold In-place Recycling by : Stephen Alan Cross

Download or read book Evaluation of Cold In-place Recycling written by Stephen Alan Cross and published by . This book was released on 1995 with total page 190 pages. Available in PDF, EPUB and Kindle. Book excerpt: Kansas has many miles of thermally cracked roads primarily in the western one-half of the State. Rehabilitation with conventional hot mix asphalt overlays and hot recycling have not given the service life expected before the existing cracks reflect through the pavement. Since 1986, the Kansas Department of Transportation has been utilizing cold in-place recycling (CIR) with an emulsified asphalt as an additive as a cost effective alternative for rehabilitation of thermally cracked low volume pavements. Field performance of the final product appears to have more variation than desirable with an expected life of three to five years. The results of a two year study indicate that the material properties of the locally available aggregates are poor which results in low strength of the CIR mixes. In addition, the in-place air voids of the wearing surface were high and had an adverse effect on the performance of CIR mixes.

Laboratory Guidelines for Cold-in-place Recycling Mixture Design

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (131 download)

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Book Synopsis Laboratory Guidelines for Cold-in-place Recycling Mixture Design by : Soohyok Im

Download or read book Laboratory Guidelines for Cold-in-place Recycling Mixture Design written by Soohyok Im and published by . This book was released on 2021 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: "This guideline describes procedures for selecting and obtaining representative samples and the laboratory mix design procedures for cold in-place recycling (CIR) using the indirect tensile strength (IDT) test."--Page 1.

Validation of the Mix Design Process for Cold In-place Rehabilitation Using Foamed Asphalt

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ISBN 13 :
Total Pages : 252 pages
Book Rating : 4.:/5 (1 download)

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Book Synopsis Validation of the Mix Design Process for Cold In-place Rehabilitation Using Foamed Asphalt by : Hosin David Lee

Download or read book Validation of the Mix Design Process for Cold In-place Rehabilitation Using Foamed Asphalt written by Hosin David Lee and published by . This book was released on 2007 with total page 252 pages. Available in PDF, EPUB and Kindle. Book excerpt: Asphalt pavement recycling has grown dramatically over the last few years as a viable technology to rehabilitate existing asphalt pavements. Iowa's current Cold In-place Recycling (CIR) practice utilizes a generic recipe specification to define the characteristic of the CIR mixture. As CIR continues to evolve, the desire to place CIR mixture with specific engineering properties requires the use of a mix design process. A new mix design procedure was developed for Cold In-place Recycling using foamed asphalt (CIR-foam) in consideration of its predicted field performance. The new laboratory mix design process was validated against various Reclaimed Asphalt Pavement (RAP) materials to determine its consistency over a wide range of RAP materials available throughout Iowa. The performance tests, which include dynamic modulus test, dynamic creep test and raveling test, were conducted to evaluate the consistency of a new CIR-foam mix design process to ensure reliable mixture performance over a wide range of traffic and climate conditions. The "lab designed" CIR will allow the pavement designer to take the properties of the CIR into account when determining the overlay thickness.

Short Term Performance of an Innovative Cold In-place Recycling Technology in Ontario

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ISBN 13 :
Total Pages : 17 pages
Book Rating : 4.:/5 (775 download)

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Book Synopsis Short Term Performance of an Innovative Cold In-place Recycling Technology in Ontario by :

Download or read book Short Term Performance of an Innovative Cold In-place Recycling Technology in Ontario written by and published by . This book was released on 2005 with total page 17 pages. Available in PDF, EPUB and Kindle. Book excerpt: Cold In-place Recycling (CIR) processes an existing asphalt pavement in situ, sizes it, mixes in additional asphalt cement, and lays it back down without off-site hauling and processing. The added asphalt cement is typically emulsified asphalt. An innovative development in CIR technology is the use of expanded asphalt, rather than emulsified asphalt to bind the mix. The Ministry of Transportation Ontario (MTO) constructed a trial section of CIR with expanded asphalt in July 2003. The 5 km trial section of CIR with expanded asphalt was constructed adjacent to 7 km of conventional CIR. Falling Weight Deflectometer (FWD) testing was carried out immediately after construction and in the year following construction to compare the CIR and CIR with expanded asphalt technologies and to assess the change in strength of the pavement structure over time. Evaluation of pavement roughness and rutting was also carried out using MTO's Automatic Road Analyzer (ARAN). For the covering abstract of this conference see ITRD number E211426.

Evaluation of Cold In-place Recycled Mixtures on US-283

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ISBN 13 :
Total Pages : 72 pages
Book Rating : 4.:/5 (456 download)

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Book Synopsis Evaluation of Cold In-place Recycled Mixtures on US-283 by : Stephen Alan Cross

Download or read book Evaluation of Cold In-place Recycled Mixtures on US-283 written by Stephen Alan Cross and published by . This book was released on 2000 with total page 72 pages. Available in PDF, EPUB and Kindle. Book excerpt: The Kansas Department of Transportation (KDOT) by cold in-place recycling (CIR) recycles approximately 120 to 160 km of pavement a year as a part of their 1-R maintenance program. Originally KDOT utilized asphalt emulsions (AE) as the additive in CIR mixtures, but based on performance concerns currently utilizes type C fly ash. Recent research indicates that the use of CIR with asphalt emulsion and hydrated lime, introduced as hot slurry, provides improved performance. KDOT constructed two test sections on US-283 using type C fly ash and CSS-1 with hot lime slurry and type C fly ash. Two additional asphalt emulsions were evaluated as well, CMS-1 and HFE-150. The cores and laboratory samples were tested for tensile strength, AASHTO T283, resilient modulus and for rutting resistance and moisture damage using the Asphalt Pavement Analyzer (Georgia Rut Tester).

Exploring Compaction Effects on Cold In-place Recycling Mixtures Using Emulsified Asphalt

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ISBN 13 :
Total Pages : 122 pages
Book Rating : 4.:/5 (15 download)

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Book Synopsis Exploring Compaction Effects on Cold In-place Recycling Mixtures Using Emulsified Asphalt by : Erica Ann Yeung

Download or read book Exploring Compaction Effects on Cold In-place Recycling Mixtures Using Emulsified Asphalt written by Erica Ann Yeung and published by . This book was released on 2017 with total page 122 pages. Available in PDF, EPUB and Kindle. Book excerpt: Cold in-place recycling (CIR) is a process that takes three to four inches of existing pavement surface and reuses 100% of it by milling and crushing it, adding asphalt emulsions and/or additives to it, before placing and re-compacting it. There is currently very little research regarding the interaction between the crushed aggregate and asphalt emulsion during the CIR process. In this study, the interactions between the combinations of crushed aggregates and asphalt emulsions were investigated along with select compaction metrics and a raveling performance test. The three types of aggregates included coated limestone, recycled asphalt pavement (RAP), and coated syenite. The two types of emulsifiers included a commodity and a proprietary one. The compaction metrics explored the compaction behavior of CIR and the raveling test is a standard test that evaluates a mixture's resistance to raveling under initial traffic. The results of this project indicated crushing aggregate and waiting between one hour to one day before mixing can be more optimal for easier compactibility than crushing and mixing immediately or waiting one week later. Not only were the results seen in the compaction metrics, but in the raveling test as well.

Optimizing Cold In-place Recycling (CIR) Applications Through Fracture Energy Performance Testing

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ISBN 13 :
Total Pages : 36 pages
Book Rating : 4.:/5 (953 download)

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Book Synopsis Optimizing Cold In-place Recycling (CIR) Applications Through Fracture Energy Performance Testing by : Daniel E. Wegman

Download or read book Optimizing Cold In-place Recycling (CIR) Applications Through Fracture Energy Performance Testing written by Daniel E. Wegman and published by . This book was released on 2016 with total page 36 pages. Available in PDF, EPUB and Kindle. Book excerpt: Cold In-place Recycling (CIR) is pulverizing and rebinding existing Hot Mix Asphalt (HMA) pavements with bituminous and/or chemical additives without heating to produce a restored pavement layer. This process has become a desired rehabilitation alternative for cost, environmental, and performance advantages compared to standard practices. The process utilizes a train of equipment with either volumetric or weight control. It also utilizes various stabilization materials including emulsion, cement, combinations of emulsion/cement, and foamed asphalt. Performance-based laboratory tests to capture fracture energy of materials have shown they can correlate to field performance quite well. These tests offer an excellent opportunity to differentiate between processes and materials used in CIR for characterization and development of a performance-based specification. In this study, the performance of CIR using four different stabilization (rebinding) materials of Engineering Emulsion, High Float Emulsion (HFMS-2s), Commodity Emulsion (CSS-1) with Cement, and Foamed asphalt are compared using a newly developed testing method called Fracture Index Value for Energy (FIVE). This test is performed on notched Semi-Circular Bending (SCB) specimens by controlling the crack mouth opening displacement (CMOD) rate. The FIVE test is found to be a practical easy to perform test that is able to compare CIR material low temperature characteristics. In this study, the FIVE test first was verified against Disc-shaped Compact Tension (DCT) test results and then was applied on the four study mixtures. Furthermore, the FIVE test results went through a validation process with inter-lab comparisons by three different testing labs of Braun Intertec, American Testing Engineering, and the Minnesota Department of Transportation (MnDOT).

Subgrade Stability of Cold In-place Recycled Asphalt Projects

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ISBN 13 :
Total Pages : 216 pages
Book Rating : 4.:/5 (4 download)

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Book Synopsis Subgrade Stability of Cold In-place Recycled Asphalt Projects by : Brian James Ellsworth

Download or read book Subgrade Stability of Cold In-place Recycled Asphalt Projects written by Brian James Ellsworth and published by . This book was released on 1998 with total page 216 pages. Available in PDF, EPUB and Kindle. Book excerpt: Cold in-place asphalt recycling (CIR) has proven to be an effective technique for the rehabilitation of asphaltic concrete pavements. Though the process provides economic and performance benefits, engineers and contractors may be unfamiliar with project selection, design, and construction procedures. Some projects designed as CIR projects have failed during the construction process. After such failures occur, alternate rehabilitation methods must be used. This is expensive and inconvenient for both the contractor and the contracting agency. Subgrade stability problems can prevent a CIR project from being successful. After the existing asphalt is milled for recycling, construction equipment is only supported by the subgrade materialand the little asphalt that remains.

Cold In-place Recycling Across America

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ISBN 13 :
Total Pages : 5 pages
Book Rating : 4.:/5 (74 download)

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Book Synopsis Cold In-place Recycling Across America by : Asphalt Recycling & Reclaiming Association. Cold In-place Recycling Committee

Download or read book Cold In-place Recycling Across America written by Asphalt Recycling & Reclaiming Association. Cold In-place Recycling Committee and published by . This book was released on 1988 with total page 5 pages. Available in PDF, EPUB and Kindle. Book excerpt: