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Effects of aggregate gradation, aggregate type, and SBS polymer-modified binder on Florida HMAC fracture energy properties

Author: W V Ping; Yuan Xiao; Florida. Department of Transportation.; United States. Federal Highway Administration.; FAMU-FSU College of Engineering (Tallahassee, Fla.)
Publisher: [Tallahassee, Fla.] : [Florida A & M University-Florida State University College of Engineering] : [Florida Dept. of Transportation], [2009]
Edition/Format:   eBook : Document : State or province government publication : EnglishView all editions and formats
Database:WorldCat
Summary:
"The primary objective of this research study was to evaluate the fracture mechanics properties of HMA concrete for Superpave mixtures. An experimental program was performed on asphalt mixtures with various types of materials. The laboratory testing program was developed by applying the viscoelastic fracture mechanics-based framework that apperared to be capable of describing the whole mechanical properties of HMA  Read more...
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Details

Material Type: Document, Government publication, State or province government publication, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: W V Ping; Yuan Xiao; Florida. Department of Transportation.; United States. Federal Highway Administration.; FAMU-FSU College of Engineering (Tallahassee, Fla.)
OCLC Number: 694881678
Notes: "FDOT research contract no.: BD-543-20."
"FSU project no.: OMNI 021037."
"March 2009."
Performed by the FAMU-FSU College of Engineering, Dept. of Civil & Environmental Engineering.
Description: xiii, 136 pages : digital, PDF file (1.59 MB) with illustrations
Details: System requirements: Adobe Acrobat Reader.; Mode of access: World Wide Web.
Other Titles: Effects of aggregate gradation, aggregate type, and styrene-butadiene-styrene polymer-modified binder on Florida hot mix asphalt concrete fracture energy properties
Responsibility: W.V. Ping, Yuan Xiao.

Abstract:

"The primary objective of this research study was to evaluate the fracture mechanics properties of HMA concrete for Superpave mixtures. An experimental program was performed on asphalt mixtures with various types of materials. The laboratory testing program was developed by applying the viscoelastic fracture mechanics-based framework that apperared to be capable of describing the whole mechanical properties of HMA according to past research studies at University of Florida. The goals for these experiments are to evaluate the effect of aggregate type, the effect of coarse aggregate gradation adjustment to control mix designs, and the effect of SBS polymer on fracture mechanics properties of HMA mixtures"--Technical report documentation page.

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