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Advancements in Concrete Materials Technology
;Partial Contents: Impact of Concrete Placing Method on Air Content, Air-Void System Parameters, and Freeze-Thaw Durability; Effect of Pumping on Air Characteristics of Conventional Concrete; Ultra-Thin, Fiber-Reinforced Concrete Overlays for Urban Intersections; Synthetic Fiber-Reinforced Concrete Bridge Decks: Redefining Bridge Deck Design and Behavior; Properties of Polymeric Fiber-Reinforced Concrete; High Dosage Type-C Fly Ash and Limestone in Sand-Gravel Concrete; Effect of Aggregate Contamination on Concrete Pavement Durability; and Permeability of Concrete Subjected to Cyclic Loading.
Advancements in Concrete Materials Technology
;Partial Contents: Impact of Concrete Placing Method on Air Content, Air-Void System Parameters, and Freeze-Thaw Durability; Effect of Pumping on Air Characteristics of Conventional Concrete; Ultra-Thin, Fiber-Reinforced Concrete Overlays for Urban Intersections; Synthetic Fiber-Reinforced Concrete Bridge Decks: Redefining Bridge Deck Design and Behavior; Properties of Polymeric Fiber-Reinforced Concrete; High Dosage Type-C Fly Ash and Limestone in Sand-Gravel Concrete; Effect of Aggregate Contamination on Concrete Pavement Durability; and Permeability of Concrete Subjected to Cyclic Loading.
Advancements in Concrete Materials Technology
1996
96 pages
Report
No indication
English
Construction Equipment, Materials, & Supplies , Road Transportation , Transportation , Transportation & Traffic Planning , Concretes , Concrete pavements , Highway bridges , Concrete , Concrete durability , Admixtures , Air entrained concretes , Cements , Fiber reinforced concrete , Polymers , Fly ash , Sand , Gravel , Loads(Forces) , Road materials , Tire recycling , Test equipment
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