Forschungsbereich Werkstoff- und Struktursimulation

Organization Name (de) Name der Organisation (de)
E202-02 - Forschungsbereich Werkstoff- und Struktursimulation
 
Code Kennzahl
E202-02
 
Type of Organization Organisationstyp
Research Division
Parent OrgUnit Übergeordnete Organisation
 
Active Aktiv
 


Results 301-320 of 1333 (Search time: 0.002 seconds).

PreviewAuthor(s)TitleTypeIssue Date
301Hengl, H.L. ; Kluger-Eigl, W. ; Blab, R. ; Füssl, J. The Performance of Paving Block Structures with Mortar Filled Joints under Temperature Loading, Accessed by Means of Numerical SimulationsArtikel Article 2017
302Aumüller, Raffael ; Jakoubek, Robin ; Koch, Robert ; Schützenhofer, Stefan ; Oberwinter, Lars ; Suppin, Rüdiger ; Hochreiner, Georg ; Kovacic, Iva VDI-Wettbewerb Integrale Planung - Wohnen 4.0Multimedia und Design Multimedia and Design2017
303Godinho, Pedro Miguel ; Hellmich, Christian Final Scientific Report - Subproject P1Bericht Report2017
304Kluger-Eigl, Wolfgang ; Hengl, Herwig ; Blab, Ronald ; Füssl, Josef Residenzplatz Salzburg PflasterplattendimensionierungBericht Report2017
305Lukacevic, Markus A Microstructure-Based Multisurface Failure Criterion for the Description of Brittle and Ductile Failure Mechanisms of Clear-WoodPräsentation Presentation2017
306Eberhardsteiner, Josef ; Füssl, Josef Berechenbarkeit von Holz - Von der Mikrostruktur zur BaukonstruktionPräsentation Presentation2017
307Godinho, Pedro Miguel A Continuum Micromechanics Approach to the Strength of Planar Fiber Networks: Paper Material ApplicationsPräsentation Presentation2017
308Irfan-ul-Hassan, Muhammad ; Königsberger, Markus ; Reihsner, Roland ; Hellmich, Christian ; Pichler, Bernhard How Water-Aggregate Interactions Affect concrete Creep: Multiscale AnalysisArtikel Article2017
309Bader, Thomas K. ; Eberhardsteiner, Josef ; de Borst, Karin Shear Stiffness and its Relation to the Microstructure of 10 European and Tropical Hardwood SpeciesArtikel Article 2017
310Hochreiner, G. ; Bader, T.K. ; Schweigler, M. ; Eberhardsteiner, J. Structural Behavior and Design of Dowel Groups - Experimental and Numerical Identification of Stress States and Failure Mechanisms of the Surrounding Timber MatrixArtikel Article 2017
311Schweigler, Michael An Engineering Modeling Approach for the Load-Deformation Behavior of Multi-Dowel Connections in Timber StructuresPräsentation Presentation2017
312Li, Mingjing A 3D Numerical Limit Analysis Approach for Strength Predict of Cross-Laminated Timber PlatesPräsentation Presentation2017
313Balduzzi, Giuseppe ; Sacco, Elio ; Auricchio, Ferdinando ; Füssl, Josef Non-Prismatic Multi-Layered Planar Beams: Critical Issues and Effective Modelling ApproachesKonferenzbeitrag Inproceedings2017
314Eberhardsteiner, Josef Strategie und Technische WissenschaftenPräsentation Presentation2017
315Füssl, Josef Experimental and Numerical Investigations on the Mechanical Behavior of Glued Laminated TimberPräsentation Presentation2017
316Autengruber, Maximilian A Numerical Simulation Tool for Coupled Heat and Mass Transfer in WoodPräsentation Presentation2017
317Li, Mingjing Numerical Limit Analysis Approaches for Strength Predictions of Cross-Laminated Timber PlatesPräsentation Presentation2017
318Autengruber, Maximilian ; Lukacevic, Markus ; Eberhardsteiner, Josef ; Füssl, Josef A Numerical Simulation Tool for Coupled Heat and Mass Transfer in WoodKonferenzbeitrag Inproceedings2017
319Kiefer, Thomas ; Kariem, Hawraa ; Füssl, Josef A Multi-Scale Material Model for the Determination of the Orthotropic Conductivity Tensor of Brick Ceramic BodiesKonferenzbeitrag Inproceedings2017
320Balduzzi, Giuseppe ; Morganti, Simone ; Sacco, Elio ; Auricchio, Ferdinando ; Füssl, Josef ; Reali, Alessandro Multilayer Beam Model: Numerical Solution Via Isogeometric Collocation MethodKonferenzbeitrag Inproceedings2017