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Number of visits: 6168911

 
Wednesday, July 2nd    10:30 - 12:30
Mechanics of Tires and Pavements: Material and Computational Modeling I
Joint IACM – IUTAM Minisymposium

Minisymposium organized by Michael Kaliske and Markus Oeser
Room: CAS1.5
MS182A
10:30 A Constitutive Model for Elasto-Viscoplastic Behaviour of Pavement Materials (Keynote Lecture)
Michael Habte and Nasser Khalili

11:00 Concept for Computational Modelling of Tire Pavement Interaction Phenomena under Consideration of Flexible Pavement Structures (Keynote Lecture)
Michael Kaliske and Markus Oeser

11:30 Triaxial Cyclic Compression Tests for Parameter Identification of Advanced Rheological Models to predict Rutting Potential of Asphalt Mixes
Bernhard Hofko and Ronald Blab

11:50 Modeling the Rheological Behaviour of Asphalt based on Fractional Time Derivatives and Neural Networks
Markus Oeser and Steffen Freitag

12:10 Experimental and Numerical Simulation of Loading Impact on Modified Granular Pavements
Markus Oeser, Sabine Werkmeister, Alvaro Gonzalez and David Alabaster

Wednesday, July 2nd    14:00 - 16:00
Mechanics of Tires and Pavements: Material and Computational Modeling II
Joint IACM – IUTAM Minisymposium

Minisymposium organized by Michael Kaliske and Markus Oeser
Room: CAS1.5
MS182B
14:00 Continuum Micromechanics based Upscaling of Viscoelastic Properties of Bituminous Mixtures
Elisabeth Aigner, Roman Lackner and Michael Wistuba

14:20 FE Modeling of Rubber Friction on Rough Roads
René van der Steen, Ines Lopez Arteaga, Bart de Bruijn, Antoine Schmeitz and Henk Nijmeijer

14:40 A Multi-Scale Approach on the Transient Dynamics of Rolling Tires
Maik Brinkmeier, Udo Nackenhorst, Anuwat Suwannachit and Matthias Ziefle

15:00 A Computational Model to Investigate the Sound Radiation from Rolling Tires
Jan Biermann and Otto von Estorff

15:20 A Meshfree Procedure for the Microscopic Simulation and Design of Rubber Compounds and its Application to Multi-Scale Simulation of Tires
C. T. Wu, Masataka Koishi, Gregg Skinner and Hiroki Shimamoto

15:40 A Hyperelastic-Visco-Elasto-Plastic-Damage Model for Rubber-Like Solids
Junji Yoshida, Masaki Fujikawa and Takaya Kobayashi

 

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