Sören Östlund
Sören Östlund
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CDIO: An international initiative for reforming engineering education
KF Berggren, D Brodeur, EF Crawley, I Ingemarsson, WTG Litant, ...
World Transactions on Engineering and Technology Education 2 (1), 49-52, 2003
The CDIO syllabus: a comparative study of expected student proficiency
J Bankel, KF Berggren, K Blom, EF Crawley, I Wiklund, S Östlund
European Journal of Engineering Education 28 (3), 297-315, 2003
Orthotropic elastic–plastic material model for paper materials
P Mäkelä, S Östlund
International Journal of Solids and Structures 40 (21), 5599-5620, 2003
Benchmarking engineering curricula with the CDIO syllabus
J Bankel, KF Berggren, M Engström, I Wiklund, EF Crawley, ...
International journal of engineering education 21 (1), 121-133, 2005
First order analysis of stiffness reduction due to matrix cracking
P Gudmundson, S Östlund
Journal of composite materials 26 (7), 1009-1030, 1992
FEM-remeshing technique applied to crack growth problems
A Trädegård, F Nilsson, S Östlund
Computer Methods in Applied Mechanics and Engineering 160 (1-2), 115-131, 1998
Measuring the stress-strain properties of paperboard in the thickness direction
N Stenberg, C Fellers, S Östlund
Journal of Pulp and Paper Science (JPPS) 27 (6), 213-221, 2001
Explicit FEM analysis of the deep drawing of paperboard
M Wallmeier, E Linvill, M Hauptmann, JP Majschak, S Östlund
Mechanics of materials 89, 202-215, 2015
The CDIO approach
EF Crawley, J Malmqvist, S Östlund, DR Brodeur, K Edström
Rethinking engineering education, 11-45, 2014
Influence of paperboard structure and processing conditions on forming of complex paperboard structures
M Östlund, S Borodulina, S Östlund
Packaging Technology and science 24 (6), 331-341, 2011
Anisotropic viscoelastic–viscoplastic continuum model for high-density cellulose-based materials
DD Tjahjanto, O Girlanda, S Östlund
Journal of the Mechanics and Physics of Solids 84, 1-20, 2015
Prediction of thermoelastic properties of composite laminates with matrix cracks
P Gudmundson, S Östlund
Composites science and technology 44 (2), 95-105, 1992
Towards a conceptual sustainable packaging development model: a corrugated box case study
CAS Dominic, S Östlund, J Buffington, MM Masoud
Packaging Technology and Science 28 (5), 397-413, 2015
Plasticity in the thickness direction of paperboard under combined shear and normal loading
N Stenberg, C Fellers, S O¨ stlund
J. Eng. Mater. Technol. 123 (2), 184-190, 2001
The combined effects of moisture and temperature on the mechanical response of paper
E Linvill, S Östlund
Experimental mechanics 54 (8), 1329-1341, 2014
The application of CDIO Standards in the evaluation of Swedish engineering degree programmes
J Malmqvist, K Edstrom, S Gunnarsson, S Ostlund
World Transactions on Engineering and Technology Education 5 (2), 361, 2006
Experimental evaluation of the interfibre joint strength of papermaking fibres in terms of manufacturing parameters and in two different loading directions
MS Magnusson, X Zhang, S Östlund
Experimental mechanics 53 (9), 1621-1634, 2013
Mechanical properties of transparent high strength biocomposites from delignified wood veneer
E Jungstedt, C Montanari, S Östlund, L Berglund
Composites Part A: Applied Science and Manufacturing 133, 105853, 2020
Experimental investigation of damage at folding of coated papers
C Barbier, PL Larsson, S Östlund
Nordic Pulp & Paper Research Journal 17 (1), 34-38a, 2002
Numerical investigation of folding of coated papers
C Barbier, PL Larsson, S Östlund
Composite Structures 67 (4), 383-394, 2005
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