Nondestructive Testing to Identify Concrete Bridge Deck Deterioration

Nondestructive Testing to Identify Concrete Bridge Deck Deterioration
Author:
Publisher: Transportation Research Board
Total Pages: 96
Release: 2013
Genre: Technology & Engineering
ISBN: 0309129338

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" TRB's second Strategic Highway Research Program (SHRP 2) Report S2-R06A-RR-1: Nondestructive Testing to Identify Concrete Bridge Deck Deterioration identifies nondestructive testing technologies for detecting and characterizing common forms of deterioration in concrete bridge decks.The report also documents the validation of promising technologies, and grades and ranks the technologies based on results of the validations.The main product of this project will be an electronic repository for practitioners, known as the NDToolbox, which will provide information regarding recommended technologies for the detection of a particular deterioration. " -- publisher's description.

The Testing of Concrete in Structures

The Testing of Concrete in Structures
Author: J. H. Bungey
Publisher: Chapman & Hall
Total Pages: 232
Release: 1982
Genre: Technology & Engineering
ISBN:

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Acceptance Tests for Surface Characteristics of Steel Strands in Prestressed Concrete

Acceptance Tests for Surface Characteristics of Steel Strands in Prestressed Concrete
Author: A. E. N. Osborn
Publisher: Transportation Research Board
Total Pages: 141
Release: 2008
Genre: Prestressed concrete
ISBN: 0309117615

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This report provides practical tests to identify and measure residues (e.g., rust, lubricants used in manufacturing processes, or corrosion inhibitors) on the surface of steel prestressing strands and to establish thresholds for residue types found to affect the strength of the strand's bond to concrete. Key products presented here are four test methods suitable for use in a quality assurance program for the manufacture of steel prestressing strand.

Fracture Mechanics Test Methods For Concrete

Fracture Mechanics Test Methods For Concrete
Author: Surendra Shah
Publisher: CRC Press
Total Pages: 304
Release: 1991-03-07
Genre: Architecture
ISBN: 9780412411007

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Compares currently used methods in determining concrete toughness and presents recommended test procedures with theories and models for describing cracking and fracturing phenomena. Effects of loading rate, temperature and humidity are also examined. Well referenced and illustrated, this book is filled with practical technical information for materials and structural engineers.

Testing During Concrete Construction

Testing During Concrete Construction
Author: H.W. Reinhardt
Publisher: CRC Press
Total Pages: 471
Release: 1991-01-31
Genre: Architecture
ISBN: 1482289032

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Testing concrete while construction is underway enables decisions to be made which can improve the quality of the finished structure. The book covers testing and measuring techniques for fresh concrete and concrete during the first few days after placing, and for reinforcement and prestressing tendons. Many examples are given of practical methods w

Fundamentals of Durable Reinforced Concrete

Fundamentals of Durable Reinforced Concrete
Author: Mark G. Richardson
Publisher: CRC Press
Total Pages: 273
Release: 2003-09-02
Genre: Technology & Engineering
ISBN: 0203223195

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Durability failures in reinforced concrete structures are wasteful of resources and energy. The introduction to practice of European Standard EN 206-1 represents a significant shift in emphasis on the need to explicitly consider each potential durability threat when specifying and producing concrete. Fundamentals of Durable Reinforced Concrete presents the fundamental aspects of concrete durability including reinforcement corrosion, carbonation, chloride ingress, alkali-aggregate reaction, freeze/thaw damage, sulphate attack, chemical attack, cracking, abrasion and weathering. The background to the durability exposure classes in EN 206-1 is also explained. Future directions in performance-based specifications and mathematical modelling of degradation are presented. This book will be of particular interest to specifiers applying the principles of the new European Standard EN 206-1 for the first time, to postgraduate researchers in mathematical modelling of degradation mechanisms, to undergraduates of engineering, architecture and building technology, and students of advanced concrete technology who require a concise source of reference on concrete durability.