1 |
Effect of nanosectioning on surface features and stiffness of an amorphous glassy polymer Sun FZ, Li H, Leifer K, Gamstedt EK Polymer Engineering and Science, 58(10), 1849, 2018 |
2 |
Modelling of the hygroelastic behaviour of normal and compression wood tracheids Joffre T, Neagu RC, Bardage SL, Gamstedt EK Journal of Structural Biology, 185(1), 89, 2014 |
3 |
State of Degradation in Archeological Oak from the 17th Century Vasa Ship: Substantial Strength Loss Correlates with Reduction in (Holo)Cellulose Molecular Weight Bjurhager I, Halonen H, Lindfors EL, Iversen T, Almkvist G, Gamstedt EK, Berglund LA Biomacromolecules, 13(8), 2521, 2012 |
4 |
Characterization of Well-Defined Poly(ethylene glycol) Hydrogels Prepared by Thiol-ene Chemistry Yang T, Long H, Malkoch M, Gamstedt EK, Berglund L, Hult A Journal of Polymer Science Part A: Polymer Chemistry, 49(18), 4044, 2011 |
5 |
Characterization of Interfacial Stress Transfer Ability by Dynamic Mechanical Analysis of Cellulose Fiber Based Composite Materials Almgren KM, Gamstedt EK Composite Interfaces, 17(9), 845, 2010 |
6 |
Modelling of effects of ultrastructural morphology on the hygroelastic properties of wood fibres Neagu RC, Gamstedt EK Journal of Materials Science, 42(24), 10254, 2007 |
7 |
Influence of molecular weight on strain-gradient yielding in polystyrene Tjernlund JA, Gamstedt EK, Xu ZH Polymer Engineering and Science, 44(10), 1987, 2004 |
8 |
Effects of debonding and fiber strength distribution on fatigue-damage propagation in carbon fiber-reinforced epoxy Gamstedt EK Journal of Applied Polymer Science, 76(4), 457, 2000 |
9 |
Fatigue damage mechanisms in unidirectional carbon-fibre-reinforced plastics Gamstedt EK, Talreja R Journal of Materials Science, 34(11), 2535, 1999 |