Guide to Diagnosis and Appraisal of AAR Damage to Concrete in Structures

Guide to Diagnosis and Appraisal of AAR Damage to Concrete in Structures
Author: Bruno Godart
Publisher: Springer Science & Business Media
Total Pages: 95
Release: 2013-04-08
Genre: Technology & Engineering
ISBN: 9400765673

Download Guide to Diagnosis and Appraisal of AAR Damage to Concrete in Structures Book in PDF, Epub and Kindle

This book describes procedures and methodologies used predominantly to obtain a diagnosis of damaged concrete possibly caused by Alkali-Aggregate Reaction (AAR). It has two primary objectives, namely firstly to identify the presence of AAR reaction, and whether or not the reaction is the primary or contributory cause of damage in the concrete; and secondly, to establish its intensity (severity) in various members of a structure. It includes aspects such as field inspection of the structure, sampling, petrographic examination of core samples, and supplementary tests and analyses on cores, such as mechanical tests and chemical analysis. Evaluation of test data for prognosis, consequences and appraisal will be more fully set out in AAR-6.2.

Guide to Diagnosis and Appraisal of AAR Damage to Concrete in Structures

Guide to Diagnosis and Appraisal of AAR Damage to Concrete in Structures
Author: Bruno Godart
Publisher: Springer
Total Pages: 104
Release: 2013-04-30
Genre: Aggregates (Building materials)
ISBN: 9789400765689

Download Guide to Diagnosis and Appraisal of AAR Damage to Concrete in Structures Book in PDF, Epub and Kindle

This book describes procedures and methods for obtaining a diagnosis of concrete damage caused by Alkali-Aggregate Reaction (AAR). Covers field inspection, sampling, petrographic examination of core samples and supplementary tests and analyses on cores.

Alkali-Aggregate Reaction in Concrete

Alkali-Aggregate Reaction in Concrete
Author: I. Sims
Publisher: CRC Press
Total Pages: 400
Release: 2020-06-30
Genre: Alkali-aggregate reactions
ISBN: 9780367573331

Download Alkali-Aggregate Reaction in Concrete Book in PDF, Epub and Kindle

This book provides an authoritative state-of-the-art review of AAR, which causes costly premature deterioration affecting many concrete structures world-wide. This unique global coverage deals with the identification, diagnosis, repair and statutory regulations concerning the deterioration of concrete structures in each country or region and has

Diagnosis & Prognosis of AAR Affected Structures

Diagnosis & Prognosis of AAR Affected Structures
Author: Victor E. Saouma
Publisher: Springer Nature
Total Pages: 594
Release: 2020-09-21
Genre: Technology & Engineering
ISBN: 3030440141

Download Diagnosis & Prognosis of AAR Affected Structures Book in PDF, Epub and Kindle

This book presents the work of the RILEM Technical Committee 259-ISR. Addressing two complementary but fundamental issues: the kinetics of the reaction, and how this will affect the integrity of the structure (serviceability and strength), it also provides methodology for assessing past deterioration to enable readers to make engineering/science-based predictions concerning future expansion. The book is divided into six major topics: selection and interpretation of optimal monitoring system for structures undergoing expansion to monitor the progress of the swelling evolution and its consequences; development/refinement of current laboratory procedures to determine the kinetics of the reaction i.e. expansion vs (future) time, and to determine the kinetic characteristics of the time-dependent reaction to be used in a finite element simulation; extrapolation of results from structural component laboratory testing; selection of material properties based on data from existing structures affected by the alkali silica reaction or delayed ettringite formation; identification of critical features that should be present in a finite element code, development of test problems for validation, and a survey of relevant programs able to conduct a transient structural analysis of a structure undergoing chemically induced expansion; and lastly guidelines for finite element codes. The book is intended for practitioners responsible for concrete structures affected by the damaging alkali aggregate reaction, engineers dealing with aging structures, and researchers in the field.

Alkali-Aggregate Reaction and Structural Damage to Concrete

Alkali-Aggregate Reaction and Structural Damage to Concrete
Author: Geoffrey E. Blight
Publisher: CRC Press
Total Pages: 250
Release: 2011-01-18
Genre: Science
ISBN: 0203093216

Download Alkali-Aggregate Reaction and Structural Damage to Concrete Book in PDF, Epub and Kindle

Since AAR was first identified in 1940, it has been a subject dominated by studies of the mineralogy of AAR-susceptible aggregates, the chemistry of the AAR and related reactions and laboratory tests used to diagnose AAR and predict potential future swelling. Civil and structural engineers have found the literature bewildering and difficult to appl

RILEM Recommendations for the Prevention of Damage by Alkali-Aggregate Reactions in New Concrete Structures

RILEM Recommendations for the Prevention of Damage by Alkali-Aggregate Reactions in New Concrete Structures
Author: Philip J. Nixon
Publisher: Springer
Total Pages: 181
Release: 2015-09-30
Genre: Technology & Engineering
ISBN: 9401772525

Download RILEM Recommendations for the Prevention of Damage by Alkali-Aggregate Reactions in New Concrete Structures Book in PDF, Epub and Kindle

This book contains the full set of RILEM Recommendations which have been produced to enable engineers, specifiers and testing houses to design and produce concrete which will not suffer damage arising from alkali reactions in the concrete. There are five recommended test methods for aggregates (designated AAR-1 to AAR-5), and an overall recommendation which describes how these should be used to enable a comprehensive aggregate assessment (AAR-0). Additionally, there are two Recommended International Specifications for concrete (AAR-7.1 & 7.2) and a Preliminary International Specification for dams and other hydro structures (AAR-7.3), which describe how the aggregate assessment can be combined with other measures in the design of the concrete to produce a concrete with a minimised risk of developing damage from alkali-aggregate reactions.

Concrete Petrography

Concrete Petrography
Author: Alan B. Poole
Publisher: CRC Press
Total Pages: 793
Release: 2016-12-19
Genre: Architecture
ISBN: 1351722336

Download Concrete Petrography Book in PDF, Epub and Kindle

This classic reference has established the value of petrography as a powerful method for the investigation of concrete as a material. It provides an authoritative and well-illustrated review of concrete composition and textures, including the causes of defects, deterioration, and failure that can be identified using a petrological microscope. This new edition is entirely revised and updated and also greatly extended to take account of new scientific developments and significant improvements in instrumentation and to reflect current laboratory working practices, as well as to reflect new understanding of the performance of concrete and related materials. Now in full color throughout, Concrete Petrography, Second Edition provides case study examples, with appropriate explanatory discussions and practical advice on selecting, handling and preparing specimens. It assists and guides the engineer, the trainee and the experienced petrographer in understanding the scientific evidence that is basic to petrographic analysis and so will lead to more accurate and timely diagnosis and treatment of problems in structural concrete. This book includes: Contributions in specialist areas by internationally recognized experts Explanation of computer techniques as an aid to petrography Full coverage of inspection, sampling, and specimen preparation New sections covering recent technological development of equipment Guidance on observation of cement and concrete mineralogy and microfabrics Discussion and illustrative examples of deterioration and failure mechanisms New work and guidance on the determination of water/cement ratio New color illustrations and micrographs throughout Thorough updating of standards, other authoritative publications, and references A fully revised, extended, and updated glossary of optical and other properties

Avoiding & Mitigating Alkali-Aggregate Reaction (AAR) in Concrete Structures

Avoiding & Mitigating Alkali-Aggregate Reaction (AAR) in Concrete Structures
Author: Diego Jesus De Souza
Publisher:
Total Pages:
Release: 2022
Genre:
ISBN:

Download Avoiding & Mitigating Alkali-Aggregate Reaction (AAR) in Concrete Structures Book in PDF, Epub and Kindle

Alkali-Aggregate Reaction (AAR) is one of the most harmful distress mechanisms affecting the serviceability and durability of concrete critical infrastructure worldwide. Over the past decades, several approaches and recommendations have been developed to assess the potential reactivity of aggregates in the laboratory and the efficiency of preventive measures (e.g., supplementary cementing materials - SCMs) to mitigate ASR in the field. Yet, recent findings suggest that the appropriate use of SCMs "only" delayed and does not entirely prevent ASR occurrence. Moreover, once ASR starts in the field, there is no "universal" solution that should be applied in various cases, and each situation should be evaluated as "unique". Nevertheless, artificially triggering healing agents have been studied in the late years, thus presenting an interesting "physical" solution to reduce the ingress of water and recover damaged concrete elements, which could present an interesting solution for durability-related distress due to ASR. This Ph.D. project focuses on detailed laboratory investigations aiming first to understand the self-healing process of concrete (i.e., by the natural or engineered process). Then, its further influence on ASR-induced expansion and deterioration, either applied internally or externally to the concrete. To achieve this goal, concrete mixtures presenting a wide range of binder compositions, using distinct types of chemical admixtures (e.g., crystalline self-healing), and incorporating five different types/nature of highly reactive aggregates (i.e., coarse and fine) were combined to manufactured concrete specimens in the laboratory. Otherwise, in aging specimens, concrete samples were designed only with GU-cement as the binder material but incorporated two different types/nature of highly reactive aggregates. Then, the samples were exposed to ASR-induced development until they reached pre-determined expansion levels, in which a wide range of sealers and coating materials were applied on the surface of the affected specimens. Mechanical (i.e., stiffness damage test, modulus of elasticity, micro indentation, shear and compressive strengths) and microscopic (damage rating index and scanning electron microscopy) tests were performed on samples at different ages (up to two years of accelerated ASR development). The results show that besides changing AAR-kinetics, the different binder compositions or the chemical admixtures could modify the distress mechanism due to AAR. The addition of crystalline healing agents or their combination with SCMs in concrete not only delayed the development of inner damage but significantly lowered the compressive strength loss at equivalent expansion amplitudes than control specimens. Moreover, the combination of different binder materials modified the chemical and mechanical properties of the ASR-gel, changing its swelling properties and the further damage development in concrete. On the other hand, the wide range of surface treatments used were not able to alter ASR distress mechanism; yet, they changed ASR-kinetics. Moreover, their effectiveness to slower the reaction shows to be significantly influenced by the damage degree to which the surface treatment is applied. Finally, a comprehensive framework enabling the optimized selection of raw materials to prevent or mitigate ASR development is proposed.

Alkali-Aggregate Reaction in Concrete

Alkali-Aggregate Reaction in Concrete
Author: Ian Sims
Publisher: CRC Press
Total Pages: 768
Release: 2017-08-01
Genre: Science
ISBN: 1317484428

Download Alkali-Aggregate Reaction in Concrete Book in PDF, Epub and Kindle

Alkali-Aggregate Reaction in Concrete: A World Review is unique in providing authoritative and up to date expert information on the causes and effects of Alkali-Aggregate Reaction (AAR) in concrete structures worldwide. In 1992 a first edition entitled The Alkali-Silica Reaction in Concrete, edited by Professor Narayan Swamy, was published in a first attempt to cover this concrete problem from a global perspective, but the coverage was incomplete. This completely new edition offers a fully updated and more universal coverage of the world situation concerning AAR and includes a wealth of new evidence and research information that has accumulated in the intervening years. Although there are various textbooks offering readers sections that deal with AAR deterioration and damage to concrete, no other single book brings together the views of recognised international experts in the field, and the wealth of scattered research information that is available. It provides a ‘state of the art’ review and deals authoritatively with the mechanisms of AAR, its diagnosis and how to treat concrete affected by AAR. It is illustrated by numerous actual examples from around the world, and comprises specialist contributions provided by senior engineers and scientists from many parts of the world. The book is divided into two distinct but complementary parts. The first five chapters deal with the most recent findings concerning the mechanisms involved in the reaction, methods concerning its diagnosis, testing and evaluation, together with an appraisal of current methods used in its avoidance and in the remediation of affected concrete structures. The second part is divided into eleven chapters covering each region of the world in turn. These chapters have been written by experts with specialist knowledge of AAR in the countries involved and include an authoritative appraisal of the problem and its solution as it affects concrete structures in the region. Such an authoritative compilation of information on AAR has not been attempted previously on this scale and this work is therefore an essential source for practising and research civil engineers, consultant engineers and materials scientists, as well as aggregate and cement producers, designers and concrete suppliers, especially regarding projects outside their own region.

Engineering-Based FE Approach to Appraise Slender Structures Affected by Alkali-Aggregate Reaction (AAR).

Engineering-Based FE Approach to Appraise Slender Structures Affected by Alkali-Aggregate Reaction (AAR).
Author: Rodrigo Vilela Gorga
Publisher:
Total Pages:
Release: 2018
Genre:
ISBN:

Download Engineering-Based FE Approach to Appraise Slender Structures Affected by Alkali-Aggregate Reaction (AAR). Book in PDF, Epub and Kindle

Alkali-aggregate reaction (AAR) is one of the most harmful distress mechanisms affecting the performance of aging reinforced concrete structures worldwide. Although several prediction models have been developed to assess the chemical reaction, a thorough and comprehensive approach with the capabilities to correlate important parameters that affect AAR and the mechanical properties of deteriorated materials, as well as the abilities to describe the current damaged state of AAR-affected structures (diagnosis) and predict the potential of further damage (prognosis) is still lacking. Such information is essential in selecting efficient remedial/rehabilitation actions for existing structures in the field. This project aims to develop a practical, yet accurate engineering-based finite element (FE) model for assessing AAR damage and predicting the future behaviour of affected infrastructure. The model is validated through three analyses. First, its capability to accurately simulate sound concrete under mechanical loading is verified by successfully simulating different beam failure mechanisms and cracking patterns, as well as predicting the members' full force-deflection curves. Next, AAR anisotropic expansion under different stress-state (confinement) conditions is accurately simulated and verified by correlation with laboratory tests. Lastly, an AAR-affected slender reinforced concrete structure (Robert-Bourassa/Charest overpass) is successfully simulated by performing a condition assessment based on several tests performed prior to its demolition.