Gerhard Fink
Assistant Professor, Wooden Structures at Aalto University School of Business
Schools
- Aalto University School of Business
Links
Biography
Aalto University School of Business
CURRICULUM VITAE
Gerhard Fink (born 1982, Austria) is Professor for Wooden Structures at the Department of Civil Engineering at Aalto University. He studied civil engineering at the Technical University of Graz in Austria. From 2009 to 2014 he worked at ETH Zurich where he performed his PhD study and worked as a Postdoc. Before he starts at Aalto University he worked, as a scientific employee and project leader, at the Structural Engineering Research Laboratory at Empa.
Peer-reviewed scientific articles
Journal article-refereed, Original researchQuasi-brittle fracture and size effect of glued laminated timber beams
Blank, Lukas; Fink, Gerhard; Jockwer, Robert; Frangi, Andrea2017 in EUROPEAN JOURNAL OF WOOD AND WOOD PRODUCTS (SPRINGER)ISSN: 0018-3768Bending tests on GLT beams having well-known local material properties
Fink, Gerhard; Frangi, Andrea; Kohler, Jochen2015 in MATERIALS AND STRUCTURES (Springer Netherlands)ISSN: 1359-5997Probabilistic approach for modelling the load-bearing capacity of glued laminated timber
Fink, Gerhard; Frangi, Andrea; Kohler, Jochen2015 in ENGINEERING STRUCTURES (Elsevier BV)ISSN: 0141-0296Quantification of different NDT/SDT methods in respect to estimate the load-bearing capacity
Fink, Gerhard; Kohler, Jochen2015 in CONSTRUCTION AND BUILDING MATERIALS (Elsevier Limited)ISSN: 0950-0618Probabilistic modelling of the tensile related material properties of timber boards and finger joint connections
Fink, Gerhard; Kohler, Jochen2015 in EUROPEAN JOURNAL OF WOOD AND WOOD PRODUCTS (SPRINGER)ISSN: 0018-3768Model for the prediction of the tensile strength and tensile stiffness of knot clusters within structural timber
Fink, Gerhard; Kohler, Jochen2014 in EUROPEAN JOURNAL OF WOOD AND WOOD PRODUCTS (SPRINGER)ISSN: 0018-3768A scheme for the evaluation of experience of the performance of timber structures
Fink, Gerhard; Kohler, Jochen2011 in ENGINEERING STRUCTURES (Elsevier BV)ISSN: 0141-0296Conference proceedingsQuasi-brittleness of glued laminated timber beams subjected to bending
Blank, Lukas; Jockwer, Robert; Frangi, Andrea; Fink, Gerhard2016 ISBN: 9781138029279Experimental investigation of tensile strength and stiffness indicators regarding European beech timber
Ehrhart, Thomas; Fink, Gerhard; Steiger, R; Frangi, Andrea2016 ISBN: 978-3-903024-35-9 Strength Grading of European Beech Lamellas for the Production of GLT and CLT
Ehrhart, T; Fink, Gerhard; Steiger, R; Frangi, Andrea2016 in Proceedings International Network on Timber Engineering Research (Timber Scientific Publishing )ISSN: 2199-9740Reliability based design of timber structures – system focussed application
Fink, Gerhard; Jockwer, Robert; Kohler, Jochen2016 ISBN: 9783903039001Basis of design principles – application to CLT
Kohler, Jochen; Fink, Gerhard; Brandner, Reinhard2016 in SP Report (KTH Royal Institute of Technology, Division of Building Materials.)ISBN: 978-91-7729-043-8ISSN: 0284-5172Extension of data sets for a more reliable prediction of the fire resistance of finger joint connections
Fink, Gerhard; Klippel, Michael; Frangi, Andrea2015 ISBN: 978-088865245-4Aspects of code based design of timber structures
Kohler, Jochen; Fink, Gerhard2015 ISBN: 978-088865245-4Risk Based Investigations of Partly Failed or Damaged Timber Constructions
Fink, Gerhard; Kohler, Jochen2014 in RILEM Bookseries (Springer Netherlands)ISBN: 978-94-007-7810-8ISSN: 2211-0844Modelling the bending strength of glued laminated timber - considering the natural growth characteristics of timber
Fink, Gerhard; Frangi, Andrea; Kohler, Jochen2013 in Meeting International Council for Research and Innovation in Building and Construction (TIMBER SCIENTIFIC PUBL)ISSN: 1864-1784
Quasi-brittle fracture and size effect of glued laminated timber beams
Bending tests on GLT beams having well-known local material properties
Probabilistic approach for modelling the load-bearing capacity of glued laminated timber
Quantification of different NDT/SDT methods in respect to estimate the load-bearing capacity
Probabilistic modelling of the tensile related material properties of timber boards and finger joint connections
Model for the prediction of the tensile strength and tensile stiffness of knot clusters within structural timber
A scheme for the evaluation of experience of the performance of timber structures
Quasi-brittleness of glued laminated timber beams subjected to bending
Experimental investigation of tensile strength and stiffness indicators regarding European beech timber
Strength Grading of European Beech Lamellas for the Production of GLT and CLT
Reliability based design of timber structures – system focussed application
Basis of design principles – application to CLT
Extension of data sets for a more reliable prediction of the fire resistance of finger joint connections
Aspects of code based design of timber structures
Risk Based Investigations of Partly Failed or Damaged Timber Constructions
Modelling the bending strength of glued laminated timber - considering the natural growth characteristics of timber
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