- Tech Report 33
- Atadero, Rebecca 1
- Brown, H. E 1
- Clemeña, Gerardo G. 1
- Drimalas, Thanos 1
- Folliard, Kevin J. 1
- Fournier, Benoît 1
- Freeman, J. R 2
- Gang, Lu 1
- Garber, Sabrina I. 1
- Grove, Jim 1
- Halstead, Woodrow J 3
- Hoppe, Edward J 1
- Hughes, Charles S 1
- Jang, Sehoon 1
- Lane, D. Stephen 4
- Lankard, David R. 1
- Lomboy, Gilson 1
- Lundy, Larry J 1
- Marshall, B. F 1
- Maupin, G. W 2
- McGhee, Kenneth H 1
- Mukhopadhyay, Anol K. 1
- Namagga, Carolyne 1
- Newlon, Howard 6
- Ozol, Michael A., 1
- Ozyildirim, H. Celik 8
- Quanji, Zhuojun 1
- Rivard, Patrice 1
- Schinkel, Thomas J 1
- Shah, Surendra P. 1
- Sherwood, W. Cullen 1
- Sprinkel, Michael M 1
- Steffes, Bob 1
- Taylor, Peter 1
- Thomas, Michael D. A. 1
- Tregger, Nathan 1
- Walker, H. N., 1
- Walker, Hollis N 1
- Wang, Kejin 1
- Wiegand, Paul 1
- Zegetosky, Caroline 1
- Colorado State University. Department of Civil and Environmental Engineering 1
- Iowa State University. National Concrete Pavement Technology Center 1
- Lankard Materials Laboratory 1
- Texas Transportation Institute 1
- United States. Federal Highway Administration 9
- Virginia. Dept. of Highways 3
- Virginia. Dept. of Highways and Transportation 2
- Virginia. Dept. of Transportation 7
- Virginia Highway & Transportation Research Council 13
- Virginia Highway Research Council 7
- Virginia Transportation Research Council (VTRC) 8
- Concrete--Testing (33)
- 82-R36. 1
- 5423 1
- DTFH61-06-H-00011 Work Plan 6 1
- FHWA-HIF-14-0003 1
- FHWA-VA-93-R10 1
- FHWA/TX-09/0-5820-1 1
- FHWA/VTRC 05-R29 1
- FHWA/VTRC 07-R21 1
- FHWA/VTRC 10-R18 1
- MPC 10-220 1
- Pooled Fund Program Study TPF-5(098) 1
- VHRC 70-R3 1
- VHRC 70-R8 1
- VHRC 70-R16 1
- VHRC 70-R35 1
- VHRC 71-R331 1
- VHRC 72-R7 1
- VHRC 73-R1 1
- VHTRC 75-R30 1
- VHTRC 76-R5 1
- VHTRC 76-R24 1
- VHTRC 78-R54 1
- VHTRC 79-R16 1
- VHTRC 81-R33 1
- VHTRC 82-R7 1
- VHTRC 82-R40 1
- VHTRC 82-R58 1
- VHTRC 83-R17 1
- VHTRC 83-R34 1
- VHTRC 84-R44 1
- VTRC 03-R13 1
- VTRC 05-R22 1
- VTRC 06-R38 1
- VTRC 07-R7 1
- VTRC 10-R18 1
- VTRC 93-R10 1
- 0-5820 1
- 87216 1
- DTFH61-06-D-00035 1
(Max 200)
- Atadero, Rebecca (1)
- Brown, H. E (1)
- Clemeña, Gerardo G. (1)
- Drimalas, Thanos (1)
- Folliard, Kevin J. (1)
- Fournier, Benoît (1)
- Freeman, J. R (2)
- Gang, Lu (1)
- Garber, Sabrina I. (1)
- Grove, Jim (1)
- Halstead, Woodrow J (3)
- Hoppe, Edward J (1)
- Hughes, Charles S (1)
- Jang, Sehoon (1)
- Lane, D. Stephen (4)
- Lankard, David R. (1)
- Lomboy, Gilson (1)
- Lundy, Larry J (1)
- Marshall, B. F (1)
- Maupin, G. W (2)
- McGhee, Kenneth H (1)
- Mukhopadhyay, Anol K. (1)
- Namagga, Carolyne (1)
- Newlon, Howard (6)
- Ozol, Michael A., (1)
- Ozyildirim, H. Celik (8)
- Quanji, Zhuojun (1)
- Rivard, Patrice (1)
- Schinkel, Thomas J (1)
- Shah, Surendra P. (1)
- Sherwood, W. Cullen (1)
- Sprinkel, Michael M (1)
- Steffes, Bob (1)
- Taylor, Peter (1)
- Thomas, Michael D. A. (1)
- Tregger, Nathan (1)
- Walker, H. N., (1)
- Walker, Hollis N (1)
- Wang, Kejin (1)
- Wiegand, Paul (1)
- Zegetosky, Caroline (1)
- Colorado State University. Department of Civil and Environmental Engineering (1)
- Iowa State University. National Concrete Pavement Technology Center (1)
- Lankard Materials Laboratory (1)
- Texas Transportation Institute (1)
- United States. Federal Highway Administration (9)
- Virginia. Dept. of Highways (3)
- Virginia. Dept. of Highways and Transportation (2)
- Virginia. Dept. of Transportation (7)
- Virginia Highway & Transportation Research Council (13)
- Virginia Highway Research Council (7)
- Virginia Transportation Research Council (VTRC) (8)
- 82-R36. (1)
- 5423 (1)
- DTFH61-06-H-00011 Work Plan 6 (1)
- FHWA-HIF-14-0003 (1)
- FHWA-VA-93-R10 (1)
- FHWA/TX-09/0-5820-1 (1)
- FHWA/VTRC 05-R29 (1)
- FHWA/VTRC 07-R21 (1)
- FHWA/VTRC 10-R18 (1)
- MPC 10-220 (1)
- Pooled Fund Program Study TPF-5(098) (1)
- VHRC 70-R3 (1)
- VHRC 70-R8 (1)
- VHRC 70-R16 (1)
- VHRC 70-R35 (1)
- VHRC 71-R331 (1)
- VHRC 72-R7 (1)
- VHRC 73-R1 (1)
- VHTRC 75-R30 (1)
- VHTRC 76-R5 (1)
- VHTRC 76-R24 (1)
- VHTRC 78-R54 (1)
- VHTRC 79-R16 (1)
- VHTRC 81-R33 (1)
- VHTRC 82-R7 (1)
- VHTRC 82-R40 (1)
- VHTRC 82-R58 (1)
- VHTRC 83-R17 (1)
- VHTRC 83-R34 (1)
- VHTRC 84-R44 (1)
- VTRC 03-R13 (1)
- VTRC 05-R22 (1)
- VTRC 06-R38 (1)
- VTRC 07-R7 (1)
- VTRC 10-R18 (1)
- VTRC 93-R10 (1)
- :Walker, Hollis N1983-01-01:The correlations obtainable from comparisons of the various air void parameters with the freeze-thaw durability of concretes are listed. It is shown t...
- :Ozyildirim, H. Celik1993-01-01:Chloride-induced corrosion causes significant deterioration in transportation structures where uncoated reinforcing steel is used. Concretes having a ...
- :Freeman, J. R ;Maupin, G. W1975-01-01:This report discusses the various types of fatigue tests, grouped by the type of specimen (beam, plate, Marshall, etc.) used. The discussion under eac...
- :Wang, Kejin ;Shah, Surendra P.2011-05-01:The goal of the project was to develop a new type of self-consolidating concrete (SCC) for slip-form paving to simplify construction and make smoother...
- :Hughes, Charles S ;Ozyildirim, H. Celik2005-01-01:The purpose of this research was to develop and implement an end-result specification (ERS) for hydraulic cement concrete for structural and paving us...
- :Lane, D. Stephen2006-01-01:The transport properties of concrete are a primary element in determining the durability of concrete. In this study, several new test methods that dir...
- :Lane, D. Stephen2005-01-01:The rapid chloride permeability test (RCPT) (AASHTO T 277, ASTM C 1202) is increasingly being used as an acceptance test for concrete constructions in...
- :Ozyildirim, H. Celik ;Lane, D. Stephen2003-01-01:Conventional concrete tends to present a problem with regard to adequate consolidation in thin sections or areas of congested reinforcement, which lea...
- :Newlon, Howard1978-01-01:Since 1961 the Research Council has used equipment manufactured by Conrad, Inc. for exposing concrete specimens to rapid cycles of freezing and thawin...
- :Lane, D. Stephen2006-01-01:Cores from 36 bridge decks were evaluated to assess the condition and quality of the concrete by petrographic methods and direct and indirect measures...
- :Halstead, Woodrow J1982-01-01
- :Hoppe, Edward J ;Lundy, Larry J2007-01-01:This project was designed to provide the Virginia Department of Transportation (VDOT) with an automated laboratory setup for performing the rapid chlo...
- :Newlon, Howard1970-01-01:Thirty-nine test panels were installed on three interstate bridges to evaluate several combinations of curing and protective treatments for concrete. ...
- :Newlon, Howard1975-01-01:Various curing and/or protective coatings were evaluated under three conditions: (1) accelerated laboratory freezing and thawing of specimens in 2 per...
- :Ozyildirim, H. Celik ;Zegetosky, Caroline2010-02-01:Concretes containing various supplementary cementitious materials (SCMs) such as silica fume, fly ash, and slag have improved properties. Nanomaterial...
- :Freeman, J. R ;Maupin, G. W1975-01-01:It has been recognized for many years that fatigue is one of many mechanisms by which asphaltic concrete pavements fail. Experience and empirical desi...
- :Halstead, Woodrow J1982-01-01:This report summarizes the work performed on the subject study from June through September 1982. In accordance with the revised work plan for Task 4 o...
- :Newlon, Howard1970-01-01:Concern for improving the durability of concrete has focused renewed attention on all aspects of concrete technology. Numerous proprietary products wh...
- :Newlon, Howard1973-01-01:Various curing and/or protective coatings were evaluated under three conditions: (1) accelerated laboratory freezing and thawing of specimens in 2 per...
- :Halstead, Woodrow J1982-01-01:This paper reviews some of the problems associated with quality assurance for hydraulic cement concrete and the difficulties of relating the results o...
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