
AASHTO R 80 : 2017
Current
Current
The latest, up-to-date edition.

PRACTICE FOR DETERMINING THE REACTIVITY OF CONCRETE AGGREGATES AND SELECTING APPROPRIATE MEASURES FOR PREVENTING DELETERIOUS EXPANSION IN NEW CONCRETE CONSTRUCTION
Available format(s)
Hardcopy , PDF
Language(s)
English
Published date
01-04-2017
Defines approaches for identifying potentially deleteriously reactive aggregates and selecting appropriate preventive measures to minimize the risk of expansion when such aggregates are used in concrete.
DevelopmentNote |
Supersedes & redesignates AASHTO PP 65. (08/2017)
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DocumentType |
Standard
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Pages |
24
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ProductNote |
THIS STANDARD ALSO REFERS TO :CSA A23.2-14A,CSA A23.2-26A,RILEM TC 191-ARP
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PublisherName |
American Association of State Highway and Transportation Officials
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Status |
Current
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Supersedes |
AASHTO M 80 : 2013 | SPECIFICATION FOR COARSE AGGREGATE FOR HYDRAULIC CEMENT CONCRETE |
ASTM C 1105 : 2008 | Standard Test Method for Length Change of Concrete Due to Alkali-Carbonate Rock Reaction |
ASTM C 295/C295M : 2018 | Standard Guide for Petrographic Examination of Aggregates for Concrete |
ASTM C 856 : 2017 | Standard Practice for Petrographic Examination of Hardened Concrete |
ASTM C 1157/C1157M : 2017 | Standard Performance Specification for Hydraulic Cement |
ASTM C 1260 : 2014 | Standard Test Method for Potential Alkali Reactivity of Aggregates (Mortar-Bar Method) |
ASTM C 1293 : 2018 | Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction |
ASTM C 1567 : 2013 | Standard Test Method for Determining the Potential Alkali-Silica Reactivity of Combinations of Cementitious Materials and Aggregate (Accelerated Mortar-Bar Method) |
ASTM C 586 : 2011 | Standard Test Method for Potential Alkali Reactivity of Carbonate Rocks as Concrete Aggregates (Rock-Cylinder Method) |
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