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Advances in Asphalt Materials

Road and Pavement Construction

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2015
ISBN13: 9780081002698
Rubricering
Elsevier Science e druk, 2015 9780081002698
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Samenvatting

The urgent need for infrastructure rehabilitation and maintenance has led to a rise in the levels of research into bituminous materials. Breakthroughs in sustainable and environmentally friendly bituminous materials are certain to have a significant impact on national economies and energy sustainability. This book will provide a comprehensive review on recent advances in research and technological developments in bituminous materials.

Opening with an introductory chapter on asphalt materials and a section on the perspective of bituminous binder specifications, Part One covers the physiochemical characterisation and analysis of asphalt materials. Part Two reviews the range of distress (damage) mechanisms in asphalt materials, with chapters covering cracking, deformation, fatigue cracking and healing of asphalt mixtures, as well as moisture damage and the multiscale oxidative aging modelling approach for asphalt concrete. The final section of this book investigates alternative asphalt materials. Chapters within this section review such aspects as alternative binders for asphalt pavements such as bio binders and RAP, paving with asphalt emulsions and aggregate grading optimization.

Specificaties

ISBN13:9780081002698
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>Preface<br>Introduction to asphalt materials<br>Chapter 1 A Perspective of bituminous binder specifications<br>Part One - Characterisation and analysis of asphalt materials <br>Chapter 2 Analytical Separation Methods in Asphalt Research <br>Chapter 3 Tri-dimensional Linear Visco-Elastic Behaviour of Bituminous Materials<br>Chapter 4 Characterization of Asphalt Materials by Scanning Probe Microscopy <br>Part Two – Damage mechanisms<br>Chapter 5 The Cracking Mechanisms in Asphalt Mixtures <br>Chapter 6 Deformation mechanisms of bituminous materials<br>Chapter 7 Damage Healing in Asphalt Pavements: Theory, Mechanisms, Measurement and Modeling<br>Chapter 8 The Fatigue Cracking of Asphalt Mixtures in Tension and Compression <br>Chapter 9 Multiscale Modeling Approach for Asphalt Concrete and Its Implications on Oxidative Aging<br>Chapter 10 Moisture Damage in Asphaltic Mixtures<br>Part Three – Alternative asphalt materials<br>Chapter 11 Advances in the development of alternative binders from biomass for the production of bio-sourced road binders<br>Chapter 12 Blending of virgin and RA binder in mixtures with high amounts of RA<br>Chapter 13 Paving with asphalt emulsions<br>Chapter 14 A new approach for aggregate grading optimization for mixtures</p>

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        Advances in Asphalt Materials