Forschungsbereich Festigkeitslehre und Biomechanik

Organization Name (de) Name der Organisation (de)
E202-01 - Forschungsbereich Festigkeitslehre und Biomechanik
 
Code Kennzahl
E202-01
 
Type of Organization Organisationstyp
Research Division
Parent OrgUnit Übergeordnete Organisation
 
Active Aktiv
 


Results 81-100 of 2593 (Search time: 0.001 seconds).

PreviewAuthor(s)TitleTypeIssue Date
81Hellmich, Christian Complex Biomechanics: Emergent Patterns from Atoms to PatientsPresentation VortragMay-2022
82Mang, Herbert Structural Analysis of Real-Scale Tests of Segmental Tunnel RingsPresentation Vortrag19-Apr-2022
83Hellmich, Christian Complex Biomechanics: Emergent Patterns from Atoms to PatientsPresentation Vortrag13-Apr-2022
84Hellmich, Christian Strategies and Highlights Concerning Long-Term Reliability of Railway Bridges and TunnelsPresentation Vortrag15-Mar-2022
85Hellmich, Christian Atoms-to-Beam Homogenization of DNA and Beyond: Emergent Patterns in Complex BiomechanicsPresentation Vortrag14-Mar-2022
86Lahayne, Olaf ; Zelaya-Lainez, Luis ; Buchner, Thomas ; Eberhardsteiner, Josef ; Füssl, Josef Influence of Nanoadditives on the Young's Modulus of CementArtikel Article 2022
87Scheiner, Stefan Computation of Mechanical Stimuli Potentially Governing the Mechanobiology of Bone Computed by Means of Micromechanics-Based ModelsPräsentation Presentation2022
88Scheiner, Stefan Contiuum Micromechanics: From Fundamentals to Stiffness Homogenization (and Beyond)Präsentation Presentation2022
89Zelaya-Lainez, Luis Variances and Invariances in Composition and Microstructure across Femoral Tissues from Different VertebratesPräsentation Presentation2022
90Mang, Herbert A. Are the Terms Stiffening/Softening Structures Mechanically Unambigous?Präsentation Presentation2022
91Hellmich, Christian Experimental and Computational Micromechanics of Dental Cement PastePräsentation Presentation2022
92Hellmich, Christian Thermodynamics and Homogenisation Theory as Driving Forces in the Design of Novel Experiments and the (Re-)evaluation of DataPräsentation Presentation2022
93Dohnalik, Petr ; Pichler, Bernhard ; Zelaya-Lainez, Luis ; Lahayne, Olaf ; Hellmich, Christian Experimental and computational micromechanics of dental cement pasteKonferenzbeitrag Inproceedings2022
94Zelaya-Lainez, Luis Variances and Invariances in Composition and Microstructure across Femoral Tissues from Different VertebratesKonferenzbeitrag Inproceedings2022
95Scheiner, Stefan Contiuum Micromechanics: From Fundamentals to Stiffness Homogenization (and Beyond)Konferenzbeitrag Inproceedings2022
96Kalliauer, Johannes ; Mang, Herbert A. Are the Terms Stiffening/Softening Structures Mechanically Unambigous?Konferenzbeitrag Inproceedings2022
97Scheiner, Stefan Computation of Mechanical Stimuli Potentially Governing the Mechanobiology of Bone Computed by Means of Micromechanics-Based ModelsKonferenzbeitrag Inproceedings2022
98Hellmich, Christian ; Ukaj, Niketa ; Scheiner, Stefan ; Sustersic, Tijana ; Ivanovic, Milos ; Van Oosterwyck, Hans ; Perez Boeréma ; Barrasa Fano, Jorge ; Exarchos, Themis ; Roumpi, Mary ; Jakovljevic, Djordje Report on Collected DataReport Bericht2022
99Zhang, Jiao-Long ; Gao, Yi-Min ; Liu, Xian ; Zhang, Zhong-An ; Yuan, Yong ; Mang, Herbert A. A Shield Tunneling Method for Enlarging the Diameter of Existing Tunnels: Experimental InvestigationsArticle Artikel 2022
100Mang, Herbert A. Vorwort des Wehrtechnisch-Naturwissenscahftlichen BeiratsBuchbeitrag Book Contribution2022