Evaluation of Sealers and Waterproofers for Extending the Life Cycle of Concrete

Evaluation of Sealers and Waterproofers for Extending the Life Cycle of Concrete
Author: Andrew Wiese
Publisher:
Total Pages:
Release: 2015-12-31
Genre:
ISBN: 9781622603664

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Concrete pavements represent a large portion of the transportation infrastructure. While the vast majority of concrete pavements provide excellent long-term performance, a portion of these pavements have recently shown premature joint deterioration. Substantial interest has developed in understanding why premature joint deterioration is being observed in jointed portland cement concrete pavements (PCCP). While some have attributed this damage to insufficient air void systems, poor mixture design, or chemical reaction between the salt and the paste, it is the hypothesis of this work that a component of this damage can be attributed to fluid absorption at the joints and chemical reactions between the salt and chemistry of the matrix. This paper discusses the role of soy methyl ester - polystyrene blends (SME-PS) as a potential method to extend the service life of concrete pavements by limiting the ingress of salt solutions. The report discusses field application of the SME-PS blends for field investigation in Lafayette and Fishers. Low temperature-differential scanning calorimetry (LT-DSC) techniques identified noticeable differences between plain mortar samples and mortar treated with SME-PS. The report also discusses the development of a test to assess chloride solution ingress during temperature cycling. The aim of this work is to provide background on some aspects that can lead to joint deterioration and provide early documentation showing that sealers may help to reduce the impact of deicers on joint damage, thereby extending the life of the concrete pavement. It should be noted that these sites as well as others are still ongoing and should be monitored for long term performance. Application procedure for SME-PS should follow manufacturer's recommendation.

Evaluation of Penetrating Sealers on Service Life of Concrete Infrastructure

Evaluation of Penetrating Sealers on Service Life of Concrete Infrastructure
Author: Goran Mohammed Fraj
Publisher:
Total Pages: 210
Release: 2022
Genre: Concrete
ISBN:

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In cold regions, thermal cycles and corrosion of reinforcements are the main factors that cause deterioration in concrete structures. Per each storm event, salt is used to melt snow and ice. Ultimately, water contains aggressive substances such as chloride that penetrate the concrete. When saturated concrete experiences FT cycles, it results in internal frost damage as well as surface salt scaling. The salt solution that contains chloride ions, at normal temperature, reaches calcium hydroxide and forms calcium oxychloride which is another form of damage observed mainly in concrete joins. On the other hand, infiltration chloride ions ultimately disrupt passive film around steel reinforcement and result in corrosion of steel. A recent trend is to extend the service life of existing infrastructure beyond the designed service life. This trend serves both sustainability, using less natural resources, and carbon footprint, generating carbon in the production of new materials. Therefore, in advanced countries, preservation, repair, and restoration as much as building new structures are important. This research explores the effect of different families of penetrating sealers on the durability performance of concrete. A large variety of penetrating sealers possessing different modes of action available in the market, research is needed to quantify and compare sealer impact on concrete durability. It should be mentioned that, along with reinforced concrete structures, a large portion of this dissertation focuses on the durability of joints in concrete pavements. The dissertation includes a selection of papers investigating a variety of important aspects of concrete joint durability. The papers include: • Evaluating penetrating sealer performance, such as depth of penetration, and wettability, • Effect of sealers on the freeze- durability of concrete joints, • Effect of sealers on the potential of calcium oxychloride formation, and • Effect of sealers on chloride ion penetration and concrete surface abrasion. The investigation conducted on concrete that considers durable concrete in terms of air voids and incorporating supplementary cementitious materials along with concrete possessing durability issues, such as improper air void system concrete, concrete contains aggregate that is susceptible to D-cracking, and concrete susceptible to form expansive calcium oxychloride. The results, presented in Chapters 3-6, show that the rate and timing of sealer application substantially affect sealer performance. Most sealers reduced both water absorption and chloride ions penetration. In addition, the durability of concrete varied depending on sealer type and mode of action. All sealers almost eliminated the potential of calcium oxychloride formation.

Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability

Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability
Author: Joan Ramon Casas
Publisher: CRC Press
Total Pages: 5491
Release: 2022-06-26
Genre: Technology & Engineering
ISBN: 1000798771

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Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability contains lectures and papers presented at the Eleventh International Conference on Bridge Maintenance, Safety and Management (IABMAS 2022, Barcelona, Spain, 11–15 July, 2022). This e-book contains the full papers of 322 contributions presented at IABMAS 2022, including the T.Y. Lin Lecture, 4 Keynote Lectures, and 317 technical papers from 36 countries all around the world. The contributions deal with the state-of-the-art as well as emerging concepts and innovative applications related to the main aspects of safety, maintenance, management, life-cycle, resilience, sustainability and technological innovations of bridges. Major topics include: advanced bridge design, construction and maintenance approaches, safety, reliability and risk evaluation, life-cycle management, life-cycle, resilience, sustainability, standardization, analytical models, bridge management systems, service life prediction, structural health monitoring, non-destructive testing and field testing, robustness and redundancy, durability enhancement, repair and rehabilitation, fatigue and corrosion, extreme loads, needs of bridge owners, whole life costing and investment for the future, financial planning and application of information and computer technology, big data analysis and artificial intelligence for bridges, among others. This volume provides both an up-to-date overview of the field of bridge engineering and significant contributions to the process of making more rational decisions on bridge safety, maintenance, management, life-cycle, resilience and sustainability of bridges for the purpose of enhancing the welfare of society. The volume serves as a valuable reference to all concerned with and/or involved in bridge structure and infrastructure systems, including students, researchers and practitioners from all areas of bridge engineering.

Integral Waterproofing of Concrete Structures

Integral Waterproofing of Concrete Structures
Author: Maher Al-Jabari
Publisher: Woodhead Publishing
Total Pages: 469
Release: 2022-06-17
Genre: Technology & Engineering
ISBN: 0128243554

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Integral Waterproofing of Concrete Structures demonstrates how integral waterproofing technologies can solve concrete durability problems based on performance and characterization experimental results. This book first establishes a background about concrete structures and porosity linked with concrete hydration, then goes on to consider concrete durability problems from the perspective of water penetration including damages from freeze-thaw cycles, alkali silica reactions, and chloride ion penetration. The mechanisms, applications, performances, and limitations of waterproofing technologies including coatings and integral systems are compared. The book also showcases all application methods of crystallization waterproofing materials, including material spray on cured concrete and on fresh concrete, and their addition to concrete mix designs as enhancers or admixtures. Pore-blocking and lining waterproofing systems including silicate-based and hygroscopic kinds, and other waterproofing materials are also discussed. Includes various, advanced, recent technologies in the field of waterproofing Presents and describes enhanced concrete characteristics and modified structures within the context of material engineering Summarizes the characteristics of waterproofing systems obtained from experimental results

Investigation of Concrete Sealer Products to Extend Concrete Pavement Life--Phase 1

Investigation of Concrete Sealer Products to Extend Concrete Pavement Life--Phase 1
Author: Justin Nielsen
Publisher:
Total Pages: 107
Release: 2011
Genre: Pavements, Concrete
ISBN:

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Five surface applied concrete sealer treatments were evaluated in the laboratory for water vapor transmission, saltwater absorption, alkali resistance, depth of penetration, UV exposure and cyclic saltwater ponding, chloride content, and freeze-thaw resistance. The five treatments included silane, high molecular weight methacrylate (HMWM), epoxy, silane basecoat/HMWM top coat, and silane basecoat/epoxy top coat. The same treatments were applied in four locations in Southwestern Idaho to initiate a long-term (4 year) field evaluation of the treatments. In the laboratory tests, the dual treatments of a silane basecoat followed by an epoxy or HMWM exhibited the best performance. Of the single compound applications, the epoxy, silane, and HMWM exhibited the best performance in descending order for saltwater absorption, alkali resistance and freeze-thaw resistance. Only the silane had a measurable depth of penetration and had the best water vapor transmission ability.

Concrete Solutions

Concrete Solutions
Author: Michael Grantham
Publisher: CRC Press
Total Pages: 649
Release: 2016-09-19
Genre: Technology & Engineering
ISBN: 1315315599

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Concrete Solutions contains the contributions from some 30 countries to Concrete Solutions, the 6th International Conference on Concrete Repair (Thessaloniki, Greece, 20-23 June 2016). Strengthening and retrofitting are major themes in this volume, with NDT and electrochemical repair following closely, discussing the latest advances and technologies in concrete repair. The book brings together some interesting and challenging theoretical approaches and questions if we really understand and approach such topics as corrosion monitoring correctly. Concrete Solutions is an essential reference work for those working in the concrete repair field, from engineers to architects and from students to clients. The Concrete Solutions Series of international conferences on concrete repair began in 2003 with a conference held in St. Malo, France in association with INSA Rennes. Subsequent conferences have seen the Series partnering with the University of Padua (Italy) in 2009, with TU Dresden (Germany) in 2011 and with Queen’s University Belfast (Northern Ireland) in 2014. In 2016 Thessaloniki (Greece) hosted the conference, partnering with both Aristotle University of Thessaloniki (AUTH) and Democritus University of Thrace (DUTH). The next conference in the series will be held in 2019 in Istanbul.