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Andreas Jäger
Andreas Jäger
Wienerberger AG
Dirección de correo verificada de wienerberger.com
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Identification of four material phases in bitumen by atomic force microscopy
A Jäger, R Lackner, C Eisenmenger-Sittner, R Blab
Road Materials and Pavement Design 5 (sup1), 9-24, 2004
1562004
The relation between indentation modulus, microfibril angle, and elastic properties of wood cell walls
A Jäger, T Bader, K Hofstetter, J Eberhardsteiner
Composites Part A: Applied Science and Manufacturing 42 (6), 677-685, 2011
1382011
Identification of microstructural components of bitumen by means of atomic force microscopy (AFM)
A Jäger, R Lackner, C Eisenmenger‐Sittner, R Blab
PAMM: Proceedings in Applied Mathematics and Mechanics 4 (1), 400-401, 2004
1202004
Elastic properties of adhesive polymers. II. Polymer films and bond lines by means of nanoindentation
J Konnerth, A Jäger, J Eberhardsteiner, U Müller, W Gindl
Journal of applied polymer science 102 (2), 1234-1239, 2006
892006
Identification of viscoelastic properties by means of nanoindentation taking the real tip geometry into account
A Jäger, R Lackner, J Eberhardsteiner
Meccanica 42, 293-306, 2007
782007
Microstructure-based identification of bitumen performance
K Stangl, A Jäger, R Lackner
Road Materials and Pavement Design 7 (sup1), 111-142, 2006
752006
Identification of stiffness tensor components of wood cell walls by means of nanoindentation
A Jäger, K Hofstetter, C Buksnowitz, W Gindl-Altmutter, J Konnerth
Composites Part A: Applied Science and Manufacturing 42 (12), 2101-2109, 2011
672011
The effect of styrene-butadiene-styrene modification on the characteristics and performance of bitumen
K Stangl, A Jäger, R Lackner
Monatshefte für Chemie-Chemical Monthly 138, 301-307, 2007
492007
Macro- and micro-mechanical properties of red oak wood (Quercus rubra L.) treated with hemicellulases
J Konnerth, M Eiser, A Jäger, TK Bader, K Hofstetter, J Follrich, T Ters, ...
Walter de Gruyter 64 (4), 447-453, 2010
472010
Microscale characterization of bitumen–back-analysis of viscoelastic properties by means of nanoindentation
A Jäger, R Lackner, K Stangl
International journal of materials research 98 (5), 404-413, 2007
442007
Multiscale modeling as the basis for reliable predictions of the behaviour of multi-composed materials
R Lackner
362004
Micro-CT-based identification of double porosity in fired clay ceramics
H Kariem, C Hellmich, T Kiefer, A Jäger, J Füssl
Journal of Materials Science 53, 9411-9428, 2018
242018
Multiscale prediction of viscoelastic properties of softwood under constant climatic conditions
J Eitelberger, TK Bader, K de Borst, A Jäger
Computational Materials Science 55, 303-312, 2012
242012
Continuum micromechanics model for fired clay bricks: Upscaling of experimentally identified microstructural features to macroscopic elastic stiffness and thermal conductivity
T Buchner, T Kiefer, M Königsberger, A Jäger, J Füssl
Materials & Design 212, 110212, 2021
202021
Experimental identification of viscoelastic properties of rubber compounds by means of torsional rheometry
HW Müllner, A Jäger, EG Aigner, J Eberhardsteiner
Meccanica 43, 327-337, 2008
192008
Finer‐Scale Extraction of Viscoelastic Properties from Nanoindentation Characterised by Viscoelastic–Plastic Response
A Jäger, R Lackner
Strain 45 (1), 45-54, 2009
182009
Computational mechanics of materials and structures
HA Mang, J Eberhardsteiner, C Hellmich, K Hofstetter, A Jäger, R Lackner, ...
Engineering Structures 31 (6), 1288-1297, 2009
132009
The viscoelastic behaviour of material phases in fired clay identified by means of grid nanoindentation
H Kariem, J Füssl, T Kiefer, A Jäger, C Hellmich
Construction and Building Materials 231, 117066, 2020
122020
Microstructural identification of bitumen by means of atomic force microscopy (AFM), modulated differential scanning calorimetry (MDSC), and reflected light microscopy (RLM)
A Jäger
122004
A validated multiscale model linking microstructural features of fired clay brick to its macroscopic multiaxial strength
T Buchner, M Königsberger, A Jäger, J Füssl
Mechanics of Materials 170, 104334, 2022
112022
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Artículos 1–20