Multiple Complementary Nondestructive Evaluation Technologies for Condition Assessment of Concrete Bridge Decks
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Nenad Gucunski | Ahmad Abu-Hawash | Francisco A. Romero | Sabine Kruschwitz | Ruediger Feldmann | Mark J Dunn | N. Gucunski | Ahmad Abu-Hawash | S. Kruschwitz | F. Romero | M. Dunn | R. Feldmann
[1] R. Browne,et al. Mechanisms of Corrosion of Steel in Concrete in Relation to Design, Inspection, and Repair of Offshore and Coastal Structures , 1980 .
[2] M Sansalone. DETECTING DELAMINATIONS IN CONCRETE BRIDGE DECKS WITH AND WITHOUT ASPHALT OVERLAYS USING AN AUTOMATED IMPACT-ECHO FIELD SYSTEM , 1993 .
[3] W R Hudson,et al. USE OF SPECTRAL ANALYSIS OF SURFACE WAVES METHOD FOR DETERMINATION OF MODULI AND THICKNESSES OF PAVEMENT SYSTEMS. , 1983 .
[4] Christopher L. Barnes,et al. Ground-Penetrating Radar for Network-Level Concrete Deck Repair Management , 2000 .
[5] Henry G. Russell. CONCRETE BRIDGE DECK PERFORMANCE , 2004 .
[6] Parisa Shokouhi,et al. Complementary Impact Echo and Ground Penetrating Radar Evaluation of Bridge Decks on I-84 Interchange in Connecticut , 2005 .
[7] Michael Raupach,et al. Half-cell potential measurements—Potential mapping on reinforced concrete structures , 2003 .
[8] F A Romero,et al. EVALUATION OF GPR BRIDGE DECK SURVEY RESULTS USED FOR DELINEATION OF REMOVAL/MAINTENANCE QUANTITY BOUNDARIES ON ASPHALT-OVERLAID, REINFORCED CONCRETE DECK , 2000 .
[9] Ali Maher,et al. Impact Echo Data from Bridge Deck Testing , 2008 .
[10] Kenneth Maser,et al. NETWORK BRIDGE DECK SURVEYS USING HIGH-SPEED RADAR: CASE STUDIES OF 44 DECKS , 1992 .