Evaluation of Concrete Structures Affected by Alkali-silica Reaction and Delayed Ettringite Formation

Evaluation of Concrete Structures Affected by Alkali-silica Reaction and Delayed Ettringite Formation
Title Evaluation of Concrete Structures Affected by Alkali-silica Reaction and Delayed Ettringite Formation PDF eBook
Author Paolo Gardoni
Publisher
Pages 115
Release 2013
Genre Alkali-aggregate reactions
ISBN

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Evaluation of Concrete Structures Affected by Alkali-silica Reaction and Delayed Ettringite Formation

Evaluation of Concrete Structures Affected by Alkali-silica Reaction and Delayed Ettringite Formation
Title Evaluation of Concrete Structures Affected by Alkali-silica Reaction and Delayed Ettringite Formation PDF eBook
Author Eric Richard Giannini
Publisher
Pages 604
Release 2012
Genre
ISBN

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Alkali-silica reaction (ASR) and delayed ettringite formation (DEF) are expansive reactions that can lead to the premature deterioration of concrete structures. Both have been implicated in the deterioration of numerous structures around the world, including many transportation structures in Texas. As a result of considerable research advances, ASR and DEF are now avoidable in new construction, but evaluating and managing the existing stock of structures damaged by these mechanisms remains a challenge. While the published guidance for evaluating structures is very effective at diagnosing the presence of ASR and DEF, there remain significant weaknesses with respect to the evaluation of structural safety and serviceability and nondestructive testing (NDT) is a minor component of the evaluation process. The research described in this dissertation involved a wide range of tests on plain and reinforced concrete at multiple scales. This included small cylinders and prisms, larger plain and reinforced concrete specimens in outdoor exposure, full-scale reinforced concrete beams, and core samples from the outdoor exposure specimens and full-scale reinforced concrete beams. Nondestructive test methods were applied at all scales, and the full-scale beams were also tested in four-point flexure to determine the effects of ASR and DEF on flexural strength and serviceability. Severe expansions from ASR and DEF did not reduce the strength of the full-scale beams or result in excessive deflections under live loads, despite significant decreases in the compressive strength and elastic modulus measured from core samples. Most NDT methods were found to be effective at low expansions but had difficulty correlating to larger expansions. Two promising NDT methods have been identified for future research and development, and guidance regarding existing test methods is offered.

Non-destructive Evaluation of In-service Concrete Structures Affected by Alkali-silica Reaction (ASR) Or Delayed Ettringite Formation (DEF)

Non-destructive Evaluation of In-service Concrete Structures Affected by Alkali-silica Reaction (ASR) Or Delayed Ettringite Formation (DEF)
Title Non-destructive Evaluation of In-service Concrete Structures Affected by Alkali-silica Reaction (ASR) Or Delayed Ettringite Formation (DEF) PDF eBook
Author Eric R. Giannini
Publisher
Pages 210
Release 2013
Genre Alkali-aggregate reactions
ISBN

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Nondestructive Evaluation of Reinforced Concrete Structures Affected by Alkali-silica Reaction and Delayed Ettringite Formation

Nondestructive Evaluation of Reinforced Concrete Structures Affected by Alkali-silica Reaction and Delayed Ettringite Formation
Title Nondestructive Evaluation of Reinforced Concrete Structures Affected by Alkali-silica Reaction and Delayed Ettringite Formation PDF eBook
Author Kerry Lynn Kreitman
Publisher
Pages 264
Release 2011
Genre
ISBN

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Alkali-silica reaction (ASR) and delayed ettringite formation (DEF) deterioration have been a problem for the concrete infrastructure in the state of Texas and around the world in recent decades. A great deal of research into the causes and mechanisms of the deterioration has helped to prevent the formation of ASR and DEF in new construction, but the evaluation and maintenance of existing structures remains a problem. The goal of this research is to investigate the use of several nondestructive testing (NDT) methods to evaluate the level of ASR and DEF deterioration in a structural element. Based on the results, recommendations are made as to which NDT methods have the most potential to be incorporated into the evaluation process.

Concrete Structures Deteriorated by Delayed Ettringite Formation and Alkali-Silica Reactions

Concrete Structures Deteriorated by Delayed Ettringite Formation and Alkali-Silica Reactions
Title Concrete Structures Deteriorated by Delayed Ettringite Formation and Alkali-Silica Reactions PDF eBook
Author António C. Azevedo
Publisher Springer Nature
Pages 93
Release 2022-09-14
Genre Technology & Engineering
ISBN 3031122674

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This book discusses the behaviour of isolated concrete bottle-shaped struts affected by internal expansion reactions (ISR). For that purpose, the numerical modelling of damaged concrete was performed using the Concrete Damaged Plasticity Model (CDPM) implemented in ABAQUS and validated the model through Sankovich's tests. A procedure to automatically obtain the concrete plasticity and damage parameters, essential for CDPM, was developed in Matlab. The inputs were the characteristic compressive strength of the concrete, the equivalent length of the finite element mesh and the ratio between the plastic and inelastic compressive strains. The results showed that the CDPM could represent the load-bearing mechanisms of isolated concrete bottle-shaped struts for a range of several stress levels to which these elements may be subjected in the panels investigated. The numerical simulations for different expansion levels consistently captured the expected damage profile of the panels and the load corresponding to the formation of the first crack, the estimated crack opening, and the ultimate load. For the panels investigated, the reduction observed in the failure load reached values close to 70%, the increase of the tensile plastic deformation was more than 60%, and the maximum crack opening can reach an increase of 113% when compared with those observed experimentally in panels without internal swelling reactions The book also offers a systematic review of the current state of knowledge and it is a valuable resource for scientists, students, practitioners, and lecturers in various scientific and engineering disciplines, namely, civil and materials engineering, as well as and other interested parties.

Proceedings of the 17th International Conference on Alkali-Aggregate Reaction in Concrete

Proceedings of the 17th International Conference on Alkali-Aggregate Reaction in Concrete
Title Proceedings of the 17th International Conference on Alkali-Aggregate Reaction in Concrete PDF eBook
Author Leandro F. M. Sanchez
Publisher Springer Nature
Pages 748
Release
Genre
ISBN 3031593499

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Proceedings of the 17th International Conference on Alkali-Aggregate Reaction in Concrete

Proceedings of the 17th International Conference on Alkali-Aggregate Reaction in Concrete
Title Proceedings of the 17th International Conference on Alkali-Aggregate Reaction in Concrete PDF eBook
Author Leandro F. M. Sanchez
Publisher Springer Nature
Pages 701
Release
Genre
ISBN 3031594193

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