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7th RILEM International Conference on Cracking in Pavements

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Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 Characterization of Asphalt Mixture’s Fracture Resistance Using the Semi-Circular Bending (SCB) Test
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    Chapter 2 The Flexural Strength of Asphalt Mixtures Using the Bending Beam Rheometer
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    Chapter 3 Experimental Study of the Precracking
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    Chapter 4 Comparison between 2PB and 4PB Methodologies Based on the Dissipated Energy Approach
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    Chapter 5 Evaluation of Thermal Stresses in Asphalt Layers Incomparison with TSRST Test Results
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    Chapter 6 A Four-Point Bending Test for the Bonding Evaluation of Composite Pavement
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    Chapter 7 Assessment of Cracking Resistance of Bituminous Mixtures by Means of Fenix Test
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    Chapter 8 Development of Dynamic Asphalt Stripping Machine for Better Prediction of Moisture Damage on Porous Asphalt in the Field
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    Chapter 9 Effect of Wheel Track Sample Geometry on Results
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    Chapter 10 Performance of ‘SAMI’S in Simulative Testing
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    Chapter 11 Towards a New Experimental and Numerical Protocol for Determining Mastic Viscosity
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    Chapter 12 Interference Factors on Tests of Asphalt Biding Agents Destinated to Paving Works Using a Statistic Study
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    Chapter 13 Development of an Accelerated Weathering and Reflective Crack Propagation Test Methodology
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    Chapter 14 The Use of Ground Penetrating Radar, Thermal Camera and Laser Scanner Technology in Asphalt Crack Detection and Diagnostics
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    Chapter 15 Asphalt Thermal Cracking Analyser (ATCA)
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    Chapter 16 Using 3D Laser Profiling Sensors for the Automated Measurement of Road Surface Conditions
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    Chapter 17 Pavement Crack Detection Using High-Resolution 3D Line Laser Imaging Technology
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    Chapter 18 Detecting Unbounded Interface with Non Destructive Techniques
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    Chapter 19 New Field Testing Procedure to Measure Surface Stresses in Plain Concrete Pavements and Structures
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    Chapter 20 Strain Measurement in Pavements with a Fibre Optics Sensor Enabled Geotextile
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    Chapter 21 Evaluating the Low Temperature Resistance of the Asphalt Pavement under the Climatic Conditions of Kazakhstan
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    Chapter 22 Millau Viaduct Response under Static and Moving Loads Considering Viscous Bituminous Wearing Course Materials
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    Chapter 23 Material Property Testing of Asphalt Binders Related to Thermal Cracking in a Comparative Site Pavement Performance Study
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    Chapter 24 Influence of Differential Displacements of Airport Pavements on Aircraft Fuelling Systems
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    Chapter 25 Rehabilitation of Cracking in Epoxy Asphalt Pavement on Steel Bridge Decks
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    Chapter 26 Long-Term Pavement Performance Evaluation
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    Chapter 27 Structural Assessment of Cracked Flexible Pavement
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    Chapter 28 Comparison between Optimum Tack Coat Application Rates as Obtained from Tension-And Torsional Shear-Type Tests
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    Chapter 29 Using Life Cycle Assessment to Optimize Pavement Crack-Mitigation
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    Chapter 30 Preliminary Analysis of Quality-Related Specification Approach for Cracking on Low Volume Hot Mix Asphalt Roads
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    Chapter 31 Evaluating Root Resistance of Asphaltic Pavement Focusing on Woody Plants’ Root Growth
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    Chapter 32 20 Years of Research on Asphalt Reinforcement – Achievements and Future Needs
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    Chapter 33 Concrete Pavement Strength Investigations at the FAA National Airport Pavement Test Facility
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    Chapter 34 The Effects Non-uniform Contact Pressure Distribution Has on Surface Distress of Flexible Pavements Using a Finite Element Method
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    Chapter 35 Finite Element Analysis of a New Test Specimen for Investigating Mixed Mode Cracks in Asphalt Overlays
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    Chapter 36 Modelling of the Initiation and Development of Transverse Cracks in Jointed Plain Concrete Pavements for Dutch Conditions
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    Chapter 37 Pavement Response Excited by Road Unevennesses Using the Boundary Element Method
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    Chapter 38 Discrete Particle Element Analysis of Aggregate Interaction in Granular Mixes for Asphalt: Combined DEM and Experimental Study
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    Chapter 39 Recent Developments and Applications of Pavement Analysis Using Nonlinear Damage (PANDA) Model
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    Chapter 40 Laboratory and Computational Evaluation of Compact Tension Fracture Test and Texas Overlay Tester for Asphalt Concrete
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    Chapter 41 Crack Fundamental Element (CFE) for Multi-scale Crack Classification
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    Chapter 42 Cracking Models for Use in Pavement Maintenance Management
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    Chapter 43 Multi-cracks Modeling in Reflective Cracking
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    Chapter 44 Using Black Space Diagrams to Predict Age-Induced Cracking
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    Chapter 45 Top-Down Cracking Prediction Tool for Hot Mix Asphalt Pavements
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    Chapter 46 A Theoretical Investigation into the 4 Point Bending Test
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    Chapter 47 Multiscale Micromechanical Lattice Modeling of Cracking in Asphalt Concrete
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    Chapter 48 Accelerated Pavement Performance Modeling Using Layered Viscoelastic Analysis
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    Chapter 49 Numerical Investigations on the Deformation Behavior of Concrete Pavements
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    Chapter 50 Fatigue Behaviour Modelling in the Mechanistic Empirical Pavement Design
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    Chapter 51 Theoretical Analysis of Overlay Resisting Crack Propagation in Old Cement Concrete Pavement
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    Chapter 52 Calibration of Asphalt Concrete Cracking Models for California Mechanistic-Empirical Design (CalME)
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    Chapter 53 Shear Failure in Plain Concrete as Applied to Concrete Pavement Overlays
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    Chapter 54 Influence of Residual Stress on PCC Pavement Potential Cracking
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    Chapter 55 Plain Concrete Cyclic Crack Resistance Curves under Constant and Variable Amplitude Loading
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    Chapter 56 Influence of External Alkali Supply on Cracking in Concrete Pavements
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    Chapter 57 Plastic Shrinkage Cracking Risk of Concrete – Evaluation of Test Methods
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    Chapter 58 Compatibility between Base Concrete Made with Different Chemical Admixtures and Surface Hardener
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    Chapter 59 Compatibility between a Quartz Surface Hardener and Different Base Concrete Mixtures
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    Chapter 60 Suitable Restrained Shrinkage Test for Fibre Reinforced Concrete: A Critical Discussion
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    Chapter 61 Influence of Chemical Admixtures and Environmental Conditions on Initial Hydration of Concrete
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    Chapter 62 Application of Different Fibers to Reduce Plastic Shrinkage Cracking of Concrete
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    Chapter 63 Evaluation of Fatigue Life Using Dissipated Energy Methods
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    Chapter 64 Measurement and Prediction Model of the Fatigue Behavior of Glass Fiber Reinforced Bituminous Mixture
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    Chapter 65 Fatigue Cracking in Bituminous Mixture Using Four Point Bending Test
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    Chapter 66 Top-Down and Bottom-Up Fatigue Cracking of Bituminous Pavements Subjected to Tangential Moving Loads
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    Chapter 67 Fatigue Performance of Highly Modified Asphalt Mixtures in Laboratory and Field Environment
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    Chapter 68 A Multi-linear Fatigue Life Model of Flexible Pavements under Multiple Axle Loadings
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    Chapter 69 Aggregate Base/Granular Subbase Quality Affecting Fatigue Cracking of Conventional Flexible Pavements in Minnesota
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    Chapter 70 Fatigue Performance of Asphalt Concretes with RAP Aggregates and Steel Slags
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    Chapter 71 Fatigue Characterization of Asphalt Rubber Mixtures with Steel Slags
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    Chapter 72 Fatigue Cracking of Gravel Asphalt Concrete: Cumulative Damage Determination
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    Chapter 73 Fatigue Resistance and Crack Propagation Evaluation of a Rubber-Modified Gap Graded Mixture in Sweden
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    Chapter 74 On the Fatigue Criterion for Calculating the Thickness of Asphalt Layers
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    Chapter 75 Acoustic Techniques for Fatigue Cracking Mechanisms Characterization in Hot Mix Asphalt (HMA)
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    Chapter 76 Fatigue Characteristics of Sulphur Modified Asphalt Mixtures
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    Chapter 77 Effect of Moisture Conditioning on Fatigue Properties of Sulphur Modified Asphalt Mixtures
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    Chapter 78 Fatigue Investigation of Mastics and Bitumens Using Annular Shear Rheometer Prototype Equipped with Wave Propagation System
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    Chapter 79 Effect of Steel Fibre Content on the Fatigue Behaviour of Steel Fibre Reinforced Concrete
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    Chapter 80 Effect of Specimen Size on Fatigue Behavior of Asphalt Mixture in Laboratory Fatigue Tests
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    Chapter 81 Long-Life Overlays by Use of Highly Modified Bituminous Mixtures
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    Chapter 82 Investigation into Tensile Properties of Polymer Modified Bitumen (PMB) and Mixture Performance
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    Chapter 83 Effect of Polymer Dispersion on the Rheology and Morphology of Polymer Modified Bituminous Blend
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    Chapter 84 Effect of Organoclay Modified Binders on Fatigue Performance
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    Chapter 85 Effects of Polymer Modified Asphalt Emulsion (PMAE) on Pavement Reflective Cracking Performance
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    Chapter 86 Characterization of Long Term Field Aging of Polymer Modified Bitumen in Porous Asphalt
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    Chapter 87 Bending Beam Rheological Evaluation of Wax Modified Asphalt Binders
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    Chapter 88 Reducing Asphalt’s Low Temperature Cracking by Disturbing Its Crystallization
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    Chapter 89 Mechanistic Evaluation of Lime-Modified Asphalt Concrete Mixtures
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    Chapter 90 Determination of Crack Growth Parameters of Asphalt Mixtures
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    Chapter 91 Differential Thermal Contraction of Asphalt Components
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    Chapter 92 Mechanistic Pavement Design Considering Bottom-Up and Top-Down-Cracking
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    Chapter 93 Strength and Fracture Properties of Aggregates
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    Chapter 94 Cracks Characteristics and Damage Mechanism of Asphalt Pavement with Semi-rigid Base
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    Chapter 95 Comparing the Slope of Load/Displacement Fracture Curves of Asphalt Concrete
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    Chapter 96 Cracking Behaviour of Bitumen Stabilised Materials (BSMs): Is There Such a Thing?
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    Chapter 97 Experimental and Theoretical Investigation of Three Dimensional Strain Occurring Near the Surface in Asphalt Concrete Layers
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    Chapter 98 Reasons of Premature Cracking Pavement Deterioration – A Case Study
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    Chapter 99 Effect of Thickness of a Sandwiched Layer of Bitumen between Two Aggregates on the Bond Strength: An Experimental Study
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    Chapter 100 Hypothesis of Existence Semicircular Shaped Cracks on Asphalt Pavements
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    Chapter 101 Quantifying the Relationship between Mechanisms of Failure and the Deterioration of CRCP under APT: Cointegration of Non-stationary Time Series
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    Chapter 102 Influence of Horizontal Traction on Top-Down Cracking in Asphalt Pavements
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    Chapter 103 Predicting the Performance of the Induction Healing Porous Asphalt Test Section
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    Chapter 104 Determining the Healing Potential of Asphalt Concrete Mixtures–A Pragmatic Approach
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    Chapter 105 Asphalt Durability and Self-healing Modelling with Discrete Particles Approach
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    Chapter 106 Quantifying Healing Based on Viscoelastic Continuum Damage Theory in Fine Aggregate Asphalt Specimen
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    Chapter 107 Evaluation of WMA Healing Properties Using Atomic Force Microscopy
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    Chapter 108 Cracking and Healing Modelling of Asphalt Mixtures
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    Chapter 109 Effects of Glass Fiber/Grid Reinforcement on the Crack Growth Rate of an Asphalt Mix
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    Chapter 110 Asphalt Rubber Interlayer Benefits in Minimizing Reflective Cracking of Overlays over Rigid Pavements
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    Chapter 111 Performance of Anti-cracking Interface Systems on Overlaid Cement Concrete Slabs – Development of Laboratory Test to Simulate Slab Rocking
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    Chapter 112 The Use of Bituminous Membranes and Geosynthetics in the Pavement Construction
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    Chapter 113 Stress Relief Asphalt Layer and Reinforcing Polyester Grid as Anti-reflective Cracking Composite Interlayer System in Pavement Rehabilitation
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    Chapter 114 Characterizing the Effects of Geosynthetics in Asphalt Pavements
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    Chapter 115 Geogrid Interlayer Performance in Pavements: Tensile-Bending Test for Crack Propagation
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    Chapter 116 Theoretical and Computational Analysis of Airport Flexible Pavements Reinforced with Geogrids
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    Chapter 117 Optimization of Geocomposites for Double-Layered Bituminous Systems
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    Chapter 118 Sand Mix Interlayer Retarding Reflective Cracking in Asphalt Concrete Overlay
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    Chapter 119 Full Scale Tests on Grid Reinforced Flexible Pavements on the French Fatigue Carrousel
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    Chapter 120 Low-Temperature Cracking of Recycled Asphalt Mixtures
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    Chapter 121 Thermal Cracking Potential in Asphalt Mixtures with High RAP Contents
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    Chapter 122 Micro-mechanical Investigation of Low Temperature Fatigue Cracking Behaviour of Bitumen
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    Chapter 123 The Study on Evaluation Methods of Asphalt Mixture Low Temperature Performance
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    Chapter 124 Permanent Deformations of WMAs Related to the Bituminous Binder Temperature Susceptibility
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    Chapter 125 Cracking Resistance of Recycled Asphalt Mixtures in Relation to Blending of RA and Virgin Binder
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    Chapter 126 Warm Mix Asphalt Performance Modeling Using the Mechanistic-Empirical Pavement Design Guide
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    Chapter 127 Shrinkage and Creep Performance of Recycled Aggregate Concrete
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    Chapter 128 Effect of Reheating Plant Warm SMA on Its Fracture Potential
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    Chapter 129 Fatigue Cracking Characteristics of Cold In-Place Recycled Pavements
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Title
7th RILEM International Conference on Cracking in Pavements
Published by
Springer Netherlands, June 2012
DOI 10.1007/978-94-007-4566-7
ISBNs
978-9-40-074565-0, 978-9-40-074566-7
Editors

Scarpas, A., Kringos, N., Al-Qadi, I., A., Loizos

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 53 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 53 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 13 25%
Student > Master 9 17%
Student > Doctoral Student 8 15%
Researcher 5 9%
Other 2 4%
Other 3 6%
Unknown 13 25%
Readers by discipline Count As %
Engineering 36 68%
Agricultural and Biological Sciences 1 2%
Social Sciences 1 2%
Physics and Astronomy 1 2%
Unknown 14 26%