The Resource 7th RILEM International Conference on Cracking in Pavements : Mechanisms, Modeling, Testing, Detection and Prevention Case Histories, edited by A. Scarpas, Niki Kringos, I. Al-Qadi, Loizos A, (electronic resource)

7th RILEM International Conference on Cracking in Pavements : Mechanisms, Modeling, Testing, Detection and Prevention Case Histories, edited by A. Scarpas, Niki Kringos, I. Al-Qadi, Loizos A, (electronic resource)

Label
7th RILEM International Conference on Cracking in Pavements : Mechanisms, Modeling, Testing, Detection and Prevention Case Histories
Title
7th RILEM International Conference on Cracking in Pavements
Title remainder
Mechanisms, Modeling, Testing, Detection and Prevention Case Histories
Statement of responsibility
edited by A. Scarpas, Niki Kringos, I. Al-Qadi, Loizos A
Creator
Contributor
Editor
Editor
Subject
Language
  • eng
  • eng
Summary
In the recent past, new materials, laboratory and in-situ testing methods and construction techniques have been introduced. In addition, modern computational techniques such as the finite element method enable the utilization of sophisticated constitutive models for realistic model-based predictions of the response of pavements. The 7th RILEM International Conference on Cracking of Pavements provided an international forum for the exchange of ideas, information and knowledge amongst experts involved in computational analysis, material production, experimental characterization, design and construction of pavements. All submitted contributions were subjected to an exhaustive refereed peer review procedure by the Scientific Committee, the Editors and a large group of international experts in the topic. On the basis of their recommendations, 129 contributions which best suited the goals and the objectives of the Conference were chosen for presentation and inclusion in the Proceedings. The strong message that emanates from the accepted contributions is that, by accounting for the idiosyncrasies of the response of pavement engineering materials, modern sophisticated constitutive models in combination with new experimental material characterization and construction techniques provide a powerful arsenal for understanding and designing against the mechanisms and the processes causing cracking and pavement response deterioration. As such they enable the adoption of truly "mechanistic" design methodologies. The papers represent the following topics: Laboratory evaluation of asphalt concrete cracking potential; Pavement cracking detection; Field investigation of pavement cracking; Pavement cracking modeling response, crack analysis and damage prediction; Performance of concrete pavements and white toppings; Fatigue cracking and damage characterization of asphalt concrete; Evaluation of the effectiveness of asphalt concrete modification; Crack growth parameters and mechanisms; Evaluation, quantification and modeling of asphalt healing properties; Reinforcement and interlayer systems for crack mitigation; Thermal and low temperature cracking of pavements; and Cracking propensity of WMA and recycled asphalts
Member of
http://bibfra.me/vocab/relation/corporateauthor
mesO0l_aD7A
Dewey number
625.8
http://bibfra.me/vocab/relation/httpidlocgovvocabularyrelatorsedt
  • hCw6BWi670s
  • MxCgtDeK1jI
  • u2JQtIXvC3w
  • f-bmwbCOiIY
Language note
English
LC call number
TA404.6
Literary form
non fiction
http://bibfra.me/vocab/lite/meetingDate
2012
http://bibfra.me/vocab/lite/meetingName
RILEM International Conference on Cracking in Pavements
Nature of contents
dictionaries
http://bibfra.me/vocab/lite/organizationName
RILEM International Conference on Cracking in Pavements
http://library.link/vocab/relatedWorkOrContributorName
  • RILEM International Conference on Cracking in Pavements
  • International Union of Laboratories and Experts in Construction Materials, Systems and Structures
  • Scarpas, A.
  • Kringos, Niki.
  • Al-Qadi, I.
  • A., Loizos.
Series statement
  • RILEM bookseries
  • RILEM Bookseries,
Series volume
  • v. 4
  • 4
http://library.link/vocab/subjectName
  • Surfaces (Physics)
  • Civil engineering
  • Computer science
  • Mechanics, applied
  • Characterization and Evaluation of Materials
  • Civil Engineering
  • Computational Science and Engineering
  • Theoretical and Applied Mechanics
Label
7th RILEM International Conference on Cracking in Pavements : Mechanisms, Modeling, Testing, Detection and Prevention Case Histories, edited by A. Scarpas, Niki Kringos, I. Al-Qadi, Loizos A, (electronic resource)
Instantiates
Publication
Note
Description based upon print version of record
Bibliography note
Includes bibliographical references and index
Carrier category
online resource
Carrier category code
cr
Content category
text
Content type code
txt
Contents
  • Title; Preface; Contents; Volume 1; Laboratory Evaluation of Asphalt Concrete Cracking Potential; Pavement Cracking Detection; Field Investigation of Pavement Cracking; Pavement Cracking Modeling Response, Crack Analysis and Damage Prediction; Performance of Concrete Pavements andWhite Toppings; Volume 2; Fatigue Cracking and Damage Characterization of Asphalt Concrete; Evaluation of the Effectiveness of Asphalt Concrete Modification; Crack Growth Parameters and Mechanisms; Evaluation, Quantification and Modeling of Asphalt Healing Properties
  • Reinforcement and Interlayer Systems for Crack MitigationThermal and Low Temperature Cracking of Pavements; Cracking Propensity ofWMA and Recycled Asphalts; Characterization of Asphalt Mixture's Fracture Resistance Using the Semi-Circular Bending(SCB) Test; Introduction; Objective and Scope; Field Projects and Asphalt Mixtures; Experimental Method: Semi-Circular Bending (SCB) Test; Field Measurement of Cracking; Discussions of Results; Summary and Conclusions; References; The Flexural Strength of Asphalt Mixtures Using the Bending Beam Rheometer; Introduction; Materials; Strength Test Methods
  • Indirect Tensile (IDT) TestDirect Tension Test (DT); Bending Beam Strength (BBS); Comparison between BBS, IDT, and DT Mixture Strength Tests; Size Effect Approach; BBS Strength Tests for Test Comparison; Summary and Conclusions; References; Experimental Study of the Precracking; Introduction; Evolution of Cracks Up to the Surface Layers; Pre-cracking; Micro Cracking Results; Introduction; Test Sections Results; In Situ Test Results; Conclusion; References; Comparison between 2PB and 4PB Methodologies Based on the Dissipated Energy Approach; Introduction
  • The Ratio of Diss sipated Energy ApproachResearch Program and Initial Testing; Dissipated gy Energ Evaluation; Comparison of D Dissipated Energy Curves; Ratio of Dissipa ated Energy Approach Application; Conclusions and Recommendations; References; Evaluation of Thermal Stresses in Asphalt Layers Incomparison with TSRST Test Results; Introduction; Calculations of Thermal Stresses; The Method of Calculation; Results of Calculations; Laboratory Method for Determination of Thermal Stresses; TSRST Test Method; Laboratory Test Results; Comparison of Calculated vs. Tested Thermal Stresses
  • ConclusssionsReferences; A Four-Point Bending Test for the Bonding Evaluation of Composite Pavement; Introduction; Quasi-analytical Investigation; Introduction to the M4-5n; Effect of the Specimen Geometry and Material Characteristics on Stress Field; Experimental Program; Test Specimens; Test Setup and Conditions; Crack Propagation Monitoring; Results and Discussion; Identification of Failure Phenomenon and Influence of Interface between Layers; Stress Intensity at Edge of Interface and Energy Release Rate; Conclusions; References
  • Assessment of Cracking Resistance of Bituminous Mixtures by Means of Fenix Test
Dimensions
unknown
Edition
1st ed. 2012.
Extent
1 online resource (1339 p.)
Form of item
online
Isbn
9781283633802
Media category
computer
Media type code
c
Other control number
10.1007/978-94-007-4566-7
Specific material designation
remote
System control number
  • (CKB)2670000000256385
  • (EBL)994716
  • (OCoLC)827617824
  • (SSID)ssj0000736185
  • (PQKBManifestationID)11481174
  • (PQKBTitleCode)TC0000736185
  • (PQKBWorkID)10772376
  • (PQKB)10946297
  • (DE-He213)978-94-007-4566-7
  • (MiAaPQ)EBC994716
  • (EXLCZ)992670000000256385
Label
7th RILEM International Conference on Cracking in Pavements : Mechanisms, Modeling, Testing, Detection and Prevention Case Histories, edited by A. Scarpas, Niki Kringos, I. Al-Qadi, Loizos A, (electronic resource)
Publication
Note
Description based upon print version of record
Bibliography note
Includes bibliographical references and index
Carrier category
online resource
Carrier category code
cr
Content category
text
Content type code
txt
Contents
  • Title; Preface; Contents; Volume 1; Laboratory Evaluation of Asphalt Concrete Cracking Potential; Pavement Cracking Detection; Field Investigation of Pavement Cracking; Pavement Cracking Modeling Response, Crack Analysis and Damage Prediction; Performance of Concrete Pavements andWhite Toppings; Volume 2; Fatigue Cracking and Damage Characterization of Asphalt Concrete; Evaluation of the Effectiveness of Asphalt Concrete Modification; Crack Growth Parameters and Mechanisms; Evaluation, Quantification and Modeling of Asphalt Healing Properties
  • Reinforcement and Interlayer Systems for Crack MitigationThermal and Low Temperature Cracking of Pavements; Cracking Propensity ofWMA and Recycled Asphalts; Characterization of Asphalt Mixture's Fracture Resistance Using the Semi-Circular Bending(SCB) Test; Introduction; Objective and Scope; Field Projects and Asphalt Mixtures; Experimental Method: Semi-Circular Bending (SCB) Test; Field Measurement of Cracking; Discussions of Results; Summary and Conclusions; References; The Flexural Strength of Asphalt Mixtures Using the Bending Beam Rheometer; Introduction; Materials; Strength Test Methods
  • Indirect Tensile (IDT) TestDirect Tension Test (DT); Bending Beam Strength (BBS); Comparison between BBS, IDT, and DT Mixture Strength Tests; Size Effect Approach; BBS Strength Tests for Test Comparison; Summary and Conclusions; References; Experimental Study of the Precracking; Introduction; Evolution of Cracks Up to the Surface Layers; Pre-cracking; Micro Cracking Results; Introduction; Test Sections Results; In Situ Test Results; Conclusion; References; Comparison between 2PB and 4PB Methodologies Based on the Dissipated Energy Approach; Introduction
  • The Ratio of Diss sipated Energy ApproachResearch Program and Initial Testing; Dissipated gy Energ Evaluation; Comparison of D Dissipated Energy Curves; Ratio of Dissipa ated Energy Approach Application; Conclusions and Recommendations; References; Evaluation of Thermal Stresses in Asphalt Layers Incomparison with TSRST Test Results; Introduction; Calculations of Thermal Stresses; The Method of Calculation; Results of Calculations; Laboratory Method for Determination of Thermal Stresses; TSRST Test Method; Laboratory Test Results; Comparison of Calculated vs. Tested Thermal Stresses
  • ConclusssionsReferences; A Four-Point Bending Test for the Bonding Evaluation of Composite Pavement; Introduction; Quasi-analytical Investigation; Introduction to the M4-5n; Effect of the Specimen Geometry and Material Characteristics on Stress Field; Experimental Program; Test Specimens; Test Setup and Conditions; Crack Propagation Monitoring; Results and Discussion; Identification of Failure Phenomenon and Influence of Interface between Layers; Stress Intensity at Edge of Interface and Energy Release Rate; Conclusions; References
  • Assessment of Cracking Resistance of Bituminous Mixtures by Means of Fenix Test
Dimensions
unknown
Edition
1st ed. 2012.
Extent
1 online resource (1339 p.)
Form of item
online
Isbn
9781283633802
Media category
computer
Media type code
c
Other control number
10.1007/978-94-007-4566-7
Specific material designation
remote
System control number
  • (CKB)2670000000256385
  • (EBL)994716
  • (OCoLC)827617824
  • (SSID)ssj0000736185
  • (PQKBManifestationID)11481174
  • (PQKBTitleCode)TC0000736185
  • (PQKBWorkID)10772376
  • (PQKB)10946297
  • (DE-He213)978-94-007-4566-7
  • (MiAaPQ)EBC994716
  • (EXLCZ)992670000000256385

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