Abstract Fracture characterisation under mode I loading of Eucalyptus globulus Labill. bonded joints with one-component polyurethane adhesive (1C-PUR) is addressed in this work. The objective is to estimate the cohesive law representative of the fracture behaviour of these joints. A
Majano-Majanoa A, Lara-Bocanegra AJ, Pereira F,Xavier J, Morais J, de Moura MFSF (2023) Direct and inverse cohesive law identification of hardwood bonded joints with 1C-PUR adhesive using DCB test. Composite Structures (2023) 117013
