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Long-term Performance of Polymer Concrete for Bridge Decks

Long-term Performance of Polymer Concrete for Bridge Decks
Author: David W. Fowler
Publisher: Transportation Research Board
Total Pages: 75
Release: 2011
Genre: Technology & Engineering
ISBN: 0309143543

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TRB's National Cooperative Highway Research Program (NCHRP) Synthesis 423: Long-Term Performance of Polymer Concrete for Bridge Decks addresses a number of topics related to thin polymer overlays (TPOs). Those topics include previous research, specifications, and procedures on TPOs; performance of TPOs based on field applications; the primary factors that influence TPO performance; current construction guidelines for TPOs related to surface preparation, mixing and placement, consolidation, finishing, and curing; repair procedures; factors that influence the performance of overlays, including life-cycle cost, benefits and costs, bridge deck condition, service life extension, and performance; and successes and failures of TPOs, including reasons for both.


Thin Polymer Bridge Deck Overlays

Thin Polymer Bridge Deck Overlays
Author: DeWayne L. Wilson
Publisher:
Total Pages:
Release: 1995
Genre: Bridges
ISBN:

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This report summarizes the Washington State Department of Transportation's (WSDOT's) 10 years of experience with "epoxy" and "methyl methacrylate" (MMA) thin polymer bridge deck overlays. WSDOT uses a modified concrete as its primary type of bridge deck overlay, but in some cases a bridge's physical characteristics, such as lightweight design or narrow roadway width, will not allow using a modified concrete overlay. Thin polymer overlays provide an alternative. Thin polymer overlays offer more rapid construction, curing in 4 to 8 hours compared to 42 hours for a modified concrete overlay. Thin polymer overlays are lightweight (due to their 3/8 in. thickness, approximately 5 lb/SF versus 19 lb/SF for a modified concrete overlay and are generally less labor intensive and require less specialized equipment than a modified concrete overlay.


Evaluation of Thin Overlays for Bridge Decks

Evaluation of Thin Overlays for Bridge Decks
Author: Steven M. Soltesz
Publisher:
Total Pages: 80
Release: 2010
Genre: Asphalt concrete
ISBN:

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Eight thin polymer overlay systems were evaluated in the laboratory and on two bridge decks exposed to trucks and passenger vehicles including those with studded tires. The products were Mark 154, Flex-O-Lith, Safetrack HW, Kwik Bond PPC MLS, Tyregrip, SafeLane HDX, Urefast PF60, and Unitex ProPoxyType III DOT. None of the overlay systems showed superior performance under moderate average daily traffic from the standpoint of maintaining good skid resistance and resisting wear through. Tyregrip and Safetrack HW started to wear through to the concrete after exposure of approximately 1.3 million vehicles, and Urefast PF60 wore through much sooner. For the five products that did not wear through, empirical equations predicted the friction number of the best of these five products would decrease to 40 (equivalent to the friction number of the concrete) within five months at a traffic level of 10,000 vehicles per lane per day. Delamination from the concrete was not a major problem with the products. Laboratory tests were not able to predict performance.


Polymer Concrete Overlays- Flexogrid

Polymer Concrete Overlays- Flexogrid
Author: Timothy L. Ramirez
Publisher:
Total Pages: 70
Release: 1989
Genre: Concrete bridges
ISBN:

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The purpose of this study is to evaluate the application of FLEXOGRID, a modified epoxy resin, to a concrete bridge deck. The FLEXOGRID is designed to impart a thin, fast curing, water impermeable protective overlay to the deck. The FLEXOGRID is 1/4 inch thick consisting of 2 applications of an epoxy broadcasted with a hard aggregate. The FLEXOGRID was easy to apply after the bridge deck delaminations were repaired and the entire deck was shotblasted. Only minor application problems occurred which can be corrected for future applications.


Concrete Bridge Deck Performance

Concrete Bridge Deck Performance
Author: H. G. Russell
Publisher: Transportation Research Board
Total Pages: 188
Release: 2004
Genre: Bridges
ISBN: 0309070112

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At head of title: National Cooperative Highway Research Program.