Characterization Of Concrete Containing Reclaimed Asphalt Pavement By Superpave Indirect Tensile Test And X Ray Computed Tomography PDF Download

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Characterization of Concrete Containing Reclaimed Asphalt Pavement by Superpave Indirect Tensile Test and X-ray Computed Tomography

Characterization of Concrete Containing Reclaimed Asphalt Pavement by Superpave Indirect Tensile Test and X-ray Computed Tomography
Author: Yu-Min Su
Publisher:
Total Pages: 133
Release: 2012
Genre:
ISBN:

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The path of crack propagation in concrete containing 100% RAP was found to be longer than that in concrete without RAP, as examined on virtual slices from X-ray CT scan. This explained the higher toughness in the concrete containing RAP.


Advances in Geotechnics and Structural Engineering

Advances in Geotechnics and Structural Engineering
Author: Sanjay Kumar Shukla
Publisher: Springer Nature
Total Pages: 700
Release: 2021-04-29
Genre: Science
ISBN: 9813369698

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This book comprises select proceedings of the International Conference on Trends and Recent Advances in Civil Engineering (TRACE 2020). The book focuses on the latest research developments in structural engineering, structural health monitoring, rehabilitation and retrofitting of structures, geotechnical engineering, and earthquake-resistant structures. The contents also cover the latest innovations in building repair and maintenance, and sustainable materials for rehabilitation and retrofitting. The contents of this book are useful for students, researchers, and professionals working in structural engineering and allied areas.


Advances in Sustainable Materials and Resilient Infrastructure

Advances in Sustainable Materials and Resilient Infrastructure
Author: Krishna R. Reddy
Publisher: Springer Nature
Total Pages: 422
Release: 2022-03-12
Genre: Technology & Engineering
ISBN: 9811697442

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The edited book comprises invited book chapter contributions from global experts in the field of sustainable materials and resilient infrastructure. The book covers the most critical and emerging topics for creating sustainable solutions for the construction industry, promoting the technologies and monitoring methods for resilient infrastructure. It focuses on sustainable solutions and offers techniques and methodologies to deliver high-quality end solutions in civil engineering. In addition, the content provides knowledge-based information for the readers to assess, monitor, measure, and practice sustainability for resilient infrastructure. The contents of the volume are a blend of academic research work and industrial case studies. It covers the use of sustainable materials like Lime-Pozzolona Binders, biopolymers, lignosulphonate, lightweight aggregates made from fly ash, calcinated clay, paper ash, and limestone as amendments/ameliorators for soil remediation, development of neo-construction materials and composites for civil engineering applications. Design of innovative pavements using alkali activation and pervious concrete for sustainable infrastructure is also discussed. The chapters also highlight the role of civil engineers in achieving UN Sustainable Development Goals, promoting climate change design for urban landscapes, and modelling building energy demand. This book is framed to address the principles and practice from the corners of geoenvironment, sustainable construction materials, low carbon materials, energy efficiency, and waste management. It is a valuable reference for faculty, researchers, field experts, scientists, and practicing engineers.


Microstructural Characterization of Portland Cement Concrete Containing Reclaimed Asphalt Pavement Aggregates Using Conventional and Advanced Petrographic Techniques

Microstructural Characterization of Portland Cement Concrete Containing Reclaimed Asphalt Pavement Aggregates Using Conventional and Advanced Petrographic Techniques
Author: Anol Mukhopadhyay
Publisher:
Total Pages: 20
Release: 2019
Genre: Pavements, Asphalt
ISBN:

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Potential issues associated with depletion of good aggregate sources and management of excess reclaimed asphalt pavement (RAP) stockpiles increasingly motivate the use of RAP in portland cement concrete (PCC) as an aggregate replacement. Although the mechanical properties of the PCC containing RAP (RAP-PCC) have been extensively studied, detailed microstructural characterization and understanding crack propagation in RAP-PCC is yet to be established. Although thin-section-based petrographic study (ASTM C856, Standard Practice for Petrographic Examination of Hardened Concrete) combined with scanning electron microscope-energy dispersive x-ray spectroscopy (SEM-EDS) provides useful information on this aspect, both methods introduce artifacts associated with destructive sample preparation techniques. High-resolution X-ray computed tomography (X-ray CT) testing has the merits to provide three-dimensional (3D) dispositions of the microstructural features nondestructively and can be used effectively to validate the observation based on conventional techniques. This paper presents a comprehensive microstructural characterization and crack propagation of RAP-PCC through a combined approach of thin section based petrographic observation, SEM-EDS, and X-ray CT. Thin-section study was useful to (1) identify agglomerated RAP particles, (2) characterize air void distribution and quantify air voids content, and (3) perform overall characterization of interfacial transition zone (ITZ). The SEM-EDS was used for a detailed characterization of ITZ and calcium hydroxide distribution. Based on thin-section and SEM studies, a cohesive failure through the asphalt layer was identified as the primary mechanism for strength reductions in RAP-PCC. X-ray CT was used to scan the RAP-PCC samples with high resolution followed by image reconstruction to generate 3D images of the specimens, which was effective not only to validate the cohesive failure mechanism but also to provide an extensive analysis of multiple features, including air void distribution and quantification and crack propagation.


Fracture Processes of Concrete

Fracture Processes of Concrete
Author: Jan G.M. van Mier
Publisher: CRC Press
Total Pages: 468
Release: 2017-07-14
Genre: Technology & Engineering
ISBN: 135144722X

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Despite tremendous advances made in fracture mechanics of concrete in recent years, very little information has been available on the nature of fracture processes and on reliable test methods for determining parameters for the different models. Moreover, most texts on this topic discuss numerical modeling but fail to consider experimentation. This book fills these gaps and synthesizes progress in the field in a simple, straightforward manner geared to practical applications.


Proceedings of the 5th International Symposium on Asphalt Pavements & Environment (APE)

Proceedings of the 5th International Symposium on Asphalt Pavements & Environment (APE)
Author: Marco Pasetto
Publisher: Springer Nature
Total Pages: 503
Release: 2019-08-29
Genre: Science
ISBN: 3030297799

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This volume highlights the latest advances, innovations, and applications in the field of asphalt pavement technology, as presented by leading international researchers and engineers at the 5th International Symposium on Asphalt Pavements & Environment (ISAP 2019 APE Symposium), held in Padua, Italy on September 11-13, 2019. It covers a diverse range of topics concerning materials and technologies for asphalt pavements, designed for sustainability and environmental compatibility: sustainable pavement materials, marginal materials for asphalt pavements, pavement structures, testing methods and performance, maintenance and management methods, urban heat island mitigation, energy harvesting, and Life Cycle Assessment. The contributions, which were selected by means of a rigorous international peer-review process, present a wealth of exciting ideas that will open novel research directions and foster multidisciplinary collaboration among different specialists.


Eco-efficient Pavement Construction Materials

Eco-efficient Pavement Construction Materials
Author: Fernando Pacheco-Torgal
Publisher: Woodhead Publishing
Total Pages: 422
Release: 2020-01-18
Genre: Technology & Engineering
ISBN: 0128189827

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Eco-efficient Pavement Construction Materials acquaints engineers with research findings on new eco-efficient pavement materials and how they can be incorporated into future pavements. Divided into three distinctive parts, the book emphasizes current research topics such as pavements with recycled waste, pavements for climate change mitigation, self-healing pavements, and pavements with energy harvesting potential. Part One considers techniques for recycling, Part Two reviews the contribution of pavements for climate change mitigation, including cool pavements, the development of new coatings for high albedo targets, and the design of pervious pavements. Finally, Part Three focuses on self-healing pavements, addressing novel materials and design and performance. Finally, the book discusses the case of pavements with energy harvesting potential, addressing different technologies on this field. Offers a clear and concise lifecycle assessment of asphalt pavement recycling for greenhouse gas emission with temporal aspects Applies key research trends to green the pavement industry Includes techniques for recycling waste materials, the design of cool pavements, self-healing mechanisms, and key steps in energy harvesting


Stone Matrix Asphalt

Stone Matrix Asphalt
Author: Krzysztof Blazejowski
Publisher: CRC Press
Total Pages: 332
Release: 2016-04-19
Genre: Technology & Engineering
ISBN: 1439819726

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In the years since the development and subsequent success of Stone Matrix Asphalt (SMA), a plethora of articles have emerged, scattered throughout various publications. The time is right for a comprehensive resource that collects, examines, and organizes this information and makes it easily accessible. A compilation and distillation of the latest k