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Laboratory and Field Evaluation of Modified Asphalt Binders and Mixes for Alaskan Pavements

Laboratory and Field Evaluation of Modified Asphalt Binders and Mixes for Alaskan Pavements PDF Author: Jenny Liu
Publisher:
ISBN:
Category : Asphalt
Languages : en
Pages : 213

Book Description
In order to properly characterize modified asphalt binders and mixes for Alaskan pavements, this study evaluated properties of 13 asphalt binders typically used in Alaska from three different suppliers, and 10 hot mix asphalt (HMA) mixtures which were either produced in the lab or collected from existing paving projects in Alaska. Various binder and mixture engineering properties were determined, including true high binder grades, complex modulus (G*), and phase angle ( ́) at high performance temperatures, multiple stress creep recovery rate and compliance, bending beam rheometer stiffness and m-value, Glover-Rowe parameter, T, rheological index, and crossover frequency for binders, and rut depth, critical strain energy release rate (Jc), Indirect tensile (IDT) creep stiffness and strength for mixtures. Binder cracking temperatures were determined using asphalt binder cracking device. Mixture cracking temperatures were determined with IDT creep compliance and strength data. It was found that rutting and cracking resistances of the mixtures with highly modified binders were better than the mixture with unmodified asphalt binder (PG 52-28). Future recommendations for highly modified asphalt binders applications and research were provided based on laboratory testing results and field survey evaluation.

Laboratory and Field Evaluation of Modified Asphalt Binders and Mixes for Alaskan Pavements

Laboratory and Field Evaluation of Modified Asphalt Binders and Mixes for Alaskan Pavements PDF Author: Jenny Liu
Publisher:
ISBN:
Category : Asphalt
Languages : en
Pages : 213

Book Description
In order to properly characterize modified asphalt binders and mixes for Alaskan pavements, this study evaluated properties of 13 asphalt binders typically used in Alaska from three different suppliers, and 10 hot mix asphalt (HMA) mixtures which were either produced in the lab or collected from existing paving projects in Alaska. Various binder and mixture engineering properties were determined, including true high binder grades, complex modulus (G*), and phase angle ( ́) at high performance temperatures, multiple stress creep recovery rate and compliance, bending beam rheometer stiffness and m-value, Glover-Rowe parameter, T, rheological index, and crossover frequency for binders, and rut depth, critical strain energy release rate (Jc), Indirect tensile (IDT) creep stiffness and strength for mixtures. Binder cracking temperatures were determined using asphalt binder cracking device. Mixture cracking temperatures were determined with IDT creep compliance and strength data. It was found that rutting and cracking resistances of the mixtures with highly modified binders were better than the mixture with unmodified asphalt binder (PG 52-28). Future recommendations for highly modified asphalt binders applications and research were provided based on laboratory testing results and field survey evaluation.

Laboratory Mix Design and Field Evaluation of Modified Asphalt Binders

Laboratory Mix Design and Field Evaluation of Modified Asphalt Binders PDF Author: Serji Amirkhanian
Publisher:
ISBN:
Category : Binders (Materials)
Languages : en
Pages : 45

Book Description


Laboratory and field evaluation of polymer modified asphalt binders and mixtures

Laboratory and field evaluation of polymer modified asphalt binders and mixtures PDF Author: Hassan Faghihnia Torshizi
Publisher:
ISBN:
Category : Asphalt concrete
Languages : en
Pages : 788

Book Description


Characterization of Alaskan Modified Asphalt Binders and Mixtures

Characterization of Alaskan Modified Asphalt Binders and Mixtures PDF Author: Jun Liu
Publisher:
ISBN:
Category :
Languages : en
Pages : 191

Book Description
"Modified asphalt binders and mixtures have been used more in recent years in Alaska. However, there has not been systematic characterization and performance data development for these materials. This study intends to systematically characterize the Alaskan asphalt binders and mixtures and identify the performance benefits of these materials through laboratory tests and field sections monitoring. The research contains five sections: 1) a comprehensive characterization on the morphologies, chemical and rheological properties of modified asphalt binders and mechanical properties of asphalt mixtures with these modified asphalt binders. The lab testing results were further confirmed through field surveys of recent paving projects constructed in Alaska and data from pavement sections in long-term pavement performance database. 2) an investigation on the applicability of the multiple stress creep recovery (MSCR) tests to evaluate the rutting resistance of Alaskan modified asphalt binders. Within the scope of the study, significance of MSCR key testing factors was assessed through four test methods with different testing protocols and procedures. 3) an evaluation of cracking susceptibility of Alaskan modified asphalt binders using various chemical and rheological indices. 4) an investigation on the connections between the chemical changes by oxidation with the rheological parameters. 5) A study to characterize the fatigue behaviors of the Alaskan highly polymerized asphalt binders using newly developed linear amplitude sweep (LAS) test with viscoelastic continuum damage (VECD) model"--Abstract, page iv.

Polymer Modified Asphalt Binders

Polymer Modified Asphalt Binders PDF Author: Kenneth R. Wardlaw
Publisher: ASTM International
ISBN: 0803114133
Category : Asphalt
Languages : en
Pages : 368

Book Description
"ASTM Publication Code Number (PCN) 04-011080-08. - "Sponsored by ASTM Committee D-4 on Road and Paving Materials."-- Foreword. - Includes bibliographical references and indexes. - Electronic reproduction; W. Conshohocken, Pa; ASTM International; 2011; Mode of access: World Wide Web; System requirements: Web browser; Access may be restricted to users at subscribing institutions.

Evaluation of Modified Asphalt Binders

Evaluation of Modified Asphalt Binders PDF Author: Ronald E. Reese
Publisher:
ISBN:
Category : Binders (Materials)
Languages : en
Pages : 66

Book Description


Evaluation of Asphalt Binder Performance with Laboratory and Field Test Sections

Evaluation of Asphalt Binder Performance with Laboratory and Field Test Sections PDF Author: Pavat Karki
Publisher:
ISBN:
Category : Asphalt cement
Languages : en
Pages : 90

Book Description


Laboratory Study of Test Methods for Polymer Modified Asphalt in Hot Mix Pavement

Laboratory Study of Test Methods for Polymer Modified Asphalt in Hot Mix Pavement PDF Author:
Publisher:
ISBN:
Category : Binders (Materials)
Languages : en
Pages : 178

Book Description


Installation and Laboratory Evaluation of Alternatives to Conventional Polymer Modification for Asphalt

Installation and Laboratory Evaluation of Alternatives to Conventional Polymer Modification for Asphalt PDF Author:
Publisher:
ISBN:
Category : Binders (Materials)
Languages : en
Pages : 22

Book Description
The Virginia Department of Transportation (VDOT) specifies polymer-modified asphalt binders for certain asphalt mixtures used on high-volume, high-priority routes. These binders must meet performance grade (PG) requirements for a PG 76-22 binder in addition to elastic recovery requirements. This typically results in the use of binders containing styrene-butadiene-styrene (SBS) modifiers. However, other polymer modifiers may also be used to achieve the PG 76-22 classification. One of these modifiers is a copolymer of SBS and polyethylene (PE) (SBS-PE) another modifier is ground tire rubber (GTR). This study was undertaken to investigate the suitability of SBS PE modified PG 76-22 binder and GTR-modified PG 76-22 binder for use in Virginia. Each modified binder was used in a 12.5 mm nominal maximum aggregate size mixture to pave approximately 2.3 lane-miles. All mixtures were produced as warm mix asphalt using a foaming system. The binders evaluated included a typical SBS polymer-modified binder as a control and binders modified with SBS-PE and GTR. During construction, all processes were documented and material was sampled for evaluation. Binder and mixture tests were performed. Binder testing included performance grading and multiple stress creep and relaxation testing. Mixture testing included volumetric analysis, dynamic modulus, and flow number tests and cracking, rutting, and fatigue analysis. Binder testing indicated that the control binder and SBS PE modified binders met VDOT specifications for classification as a PG 76-22 binder; the GTR-modified binder graded to a PG 70-22 binder, as it did not meet the PG 76-22 high-temperature specification and did not pass the elastic recovery requirement. Laboratory mixture testing indicated that the performance of the SBS PE modified mixture should be similar to that of the control mixture. Laboratory test results for the GTR-modified mixture were mixed, with some indicating that the performance was similar to that of the control mixture and some indicating that the performance may be less than that of the control. Based on the study, SBS PE modified binders should continue to be allowed as an alternative to SBS-modified binder provided specifications for PG 76-22 binders are met. However, further investigation of GTR-modified binders is suggested before recommendations can be made. In addition, long-term evaluation of the field site is recommended for validation of the laboratory findings.

Laboratory Evaluations of Chemically Modified Asphalt and Comparison with Polymer Modified Asphalt

Laboratory Evaluations of Chemically Modified Asphalt and Comparison with Polymer Modified Asphalt PDF Author: Hossein Ajideh
Publisher:
ISBN:
Category :
Languages : en
Pages : 220

Book Description