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Advances in Interlaboratory Testing and Evaluation of Bituminous Materials: State-of-the-Art Report of the RILEM Technical Committee 206-ATB

Advances in Interlaboratory Testing and Evaluation of Bituminous Materials: State-of-the-Art Report of the RILEM Technical Committee 206-ATB
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Feldname Details
Vorliegende Sprache eng
ISBN 978-94-007-5103-3
Name Partl, Manfred N.
Bahia, Hussain U.
Name ANZEIGE DER KETTE Bahia, Hussain U.
Name Canestrari, Francesco
Roche, Chantal ¬de la¬
Di Benedetto, Hervé
Piber, Herald
Sybilski, Dariusz
T I T E L Advances in Interlaboratory Testing and Evaluation of Bituminous Materials
Zusatz zum Titel State-of-the-Art Report of the RILEM Technical Committee 206-ATB
Verlagsort Dordrecht
Verlag Springer
Erscheinungsjahr 2013
2013
Umfang Online-Ressource (XII, 453 p. 307 illus., 172 illus. in color, digital)
Reihe RILEM State-of-the-Art Reports ; 9
Notiz / Fußnoten Description based upon print version of record
Weiterer Inhalt Advances in Interlaboratory Testing and Evaluation of Bituminous Materials; Preface; Acknowledgement; Contents; Chapter 1: Introduction; 1.1 Background of RILEM Interlaboratory Tests; 1.1.1 General; 1.1.2 Advanced Testing of Bituminous Materials; 1.2 Methodology for Testing of Bituminous Pavement Materials - Basic Elements of a Testing Framework; 1.3 Principles for Planning Interlaboratory Tests; 1.3.1 General; 1.3.2 Checklist of Major Points; References; Chapter 2: Binder Testing; 2.1 Bituminous Binder Fatigue Testing: State-Of-The-Art; 2.1.1 Fatigue Phenomenon; 2.1.1.1 Basics. 2.1.1.2 Fatigue in Asphalt Binder2.1.1.3 Asphalt Pavement Cracking; Introduction; Theoretical Basis; 2.1.1.4 Fatigue and Healing Phenomena; Fatigue; Healing; 2.1.1.5 Fatigue Life; 2.1.1.6 Fatigue Life Criteria; Conventional Criteria; A Dissipated Energy Approach Criteria; 2.1.2 Review of Asphalt Binder Fatigue Test Methods; 2.1.2.1 Historical Development of Asphalt Binder Fatigue Test Methods; Pell Device; Fatigue with Fraass Apparatus; SHRP - 4 Point Bending; DSR; LCPC Repeated Local Fracture of Bitumen Test; 2.1.2.2 Binder Fatigue Test Using a DSR: Achievements and Limitations. Remarks on Binder Fatigue Test Using DSR2.1.2.3 Correlation Between Fatigue Test for Binders and Asphalt Mixtures -Rotational Method for Mixes; 2.1.2.4 Development of Other Test Methods for Binder and Mixtures Fatigue; Metravib Based Tests: LCPC Experience; Torsion Cylinder; Annular Shear Rheometer: ENTPE Experience; 2.1.2.5 Conclusions; 2.2 Binder Fatigue Properties and the Results of the Rilem Round Robin Test; 2.2.1 Introduction; 2.2.2 Participating Laboratories; 2.2.3 Experimental Procedure; 2.2.3.1 Samples; Binders; Mixtures; 2.2.3.2 Binder Fatigue Tests; Phase 1; Phase 2. 2.2.3.3 Mixture Fatigue Tests2.2.4 First Phase Results; 2.2.4.1 Binders: Low Strain Stiffness and Phase Angle; 2.2.4.2 Binder Fatigue Tests; 2.2.4.3 Mixture Fatigue Tests; 2.2.5 Second Phase Results; 2.2.5.1 Binders: Low Strain Stiffness and Phase Angle; 2.2.5.2 Binder Fatigue Tests; 2.2.5.3 Proposal for Testing Harder Binder Grades; 2.2.5.4 Mixture Fatigue Tests; 2.2.5.5 Comparison of Binder and Mixture Fatigue Test Results; 2.2.6 Discussion and Conclusions; 2.3 Test Description: RILEM Binder Fatigue Test; 2.3.1 Preparation of the Rheometer; 2.3.2 Sample Preparation and Loading. 2.3.3 Preparation of Silicon Molds2.3.4 The Fatigue Test: Testing Mode; References; Chapter 3: Mixture Design and Compaction; 3.1 Background; 3.1.1 Motivation for Study; 3.1.2 History of Hot Mix Asphalt Mix Design and Laboratory Compaction Methods; 3.1.3 Engineering Considerations in Asphalt Concrete Compaction; 3.2 Mixture Design Methods; 3.2.1 Mixture Design and Compaction Methods; 3.2.2 Marshall Design and Impact Hammer Compaction; 3.2.3 California Kneading Compactor (Hveem Design Method); 3.2.4 French Roller Compactor; 3.2.5 German Sector Compactor; 3.2.6 Superpave Gyratory Compactor. 3.3 Hot Mix Asphalt Image Acquisition, Processing, and Analysis Procedures. Preface --  Acknowledgement (Participating Experts and Laboratories) --  1. Introduction, by Partl et al: Background of RILEM interlaboratory tests --  Methodology for testing of bituminous pavement materials principles - basic elements of a testing framework --  Principles for planning interlaboratory tests --  References --  2. Binder Testing, by Sybilski et al: Bituminous binder fatigue testing: State-of-the-art --  Binder fatigue properties and the results of the RILEM round robin test --  Test description: RILEM binder fatigue test --  References --  3. Mixture Design and Compaction, by Bahia et al:  Background --  Mixture design methods --  Hot mix asphalt image acquisition, processing, and analysis procedures -- Effect of compaction methods on internal structure and air void distribution of asphalt mixture --  RILEM TG2 group study on internal aggregate structure of hot mix asphalt --  Concluding remarks --  References --  4. Mechanical Testing of Bituminous Mixtures, by Di Benedetto et al:  Introduction --  Wheel tracking tests (WTT) campaigns on mixtures made with pure and modified bitumen --  Modeling and finite elements calculation --  References --  5. Interlaboratory Tests on Pavement Performance Prediction and Evaluation -  Rutting, by Piber et al:  Introduction --  Pavement of the test section --  Rutting measurements and predictions by the laboratories --  Field measurements and data collection by the road operator --  Data evaluation --  Conclusions --  References --  6. Mechanical Testing of Interlayer Bonding in Asphalt Pavements, by Canestrari et al.: Overview on interlayer bonding in asphalt pavements --  Inter-laboratory test on interlayer bonding of asphalt pavements --  Conclusions --  References --  7. Hot Recycling of Bituminous Mixtures, by DeLaRoche et al:  Introduction --  Use of reclaimed asphalt in Europe --  Development of a laboratory aging protocol for bituminous mixtures --  Organisation of round robin test --  Results of round robin test --  Conclusions and recommendations on laboratory ageing of bituminous mixtures --  References --  Annex: Principle of infrared spectroscopy --  8. General Summary and Outlook, by Chailleux et al: Introduction -- RILEM technical committee summary and feedback --  RILEM technical committee outlook --  Concluding remarks --  References --  Index.   .
Titelhinweis Buchausg. u.d.T.ISBN: 978-94-007-5103-3
ISBN ISBN 978-94-007-5104-0
Klassifikation TNK
TEC009020
TEC021000
620.1960287
691
TA401-492
Kurzbeschreibung This STAR on asphalt materials presents the achievements of RILEM TC 206 ATB, acquired over many years of interlaboratory tests and international knowledge exchange. It covers experimental aspects of bituminous binder fatigue testing; the background on compaction methods and imaging techniques for characterizing asphalt mixtures including validation of a new imaging software; it focuses on experimental questions and analysis tools regarding mechanical wheel tracking tests, comparing results from different labs and using finite element techniques. Furthermore, long-term rutting prediction and evaluation for an Austrian road are discussed, followed by an extensive analysis and test program on interlayer bond testing of three different test sections which were specifically constructed for this purpose. Finally, the key issue of manufacturing reclaimed hot mix asphalt in the laboratory is studied and recommendations for laboratory ageing of bituminous mixtures are given
SWB-Titel-Idn 37537633X
Signatur Springer E-Book
Bemerkungen Elektronischer Volltext - Campuslizenz
Elektronische Adresse $uhttp://dx.doi.org/10.1007/978-94-007-5104-0
Internetseite / Link Volltext
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