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Analysis of Bonding Mechanisms of Various Implants and Adhesives in Laminated Oak-Wood Elements (CROSBI ID 317408)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Novosel, Andrija ; Sedlar, Tomislav ; Miklečić, Josip ; Turkulin, Hrvoje ; Lučić, Luka ; Mihulja, Goran ; Živković, Vjekoslav Analysis of Bonding Mechanisms of Various Implants and Adhesives in Laminated Oak-Wood Elements // Polymers, 14 (2022), 24; 5373, 16. doi: 10.3390/polym14245373

Podaci o odgovornosti

Novosel, Andrija ; Sedlar, Tomislav ; Miklečić, Josip ; Turkulin, Hrvoje ; Lučić, Luka ; Mihulja, Goran ; Živković, Vjekoslav

engleski

Analysis of Bonding Mechanisms of Various Implants and Adhesives in Laminated Oak-Wood Elements

This study analysed the bonding mechanisms and strength between wood and non-wood implants in producing laminated oak-wood beams. The suitability of different types of adhesives, namely for load-bearing and general purpose, was also analysed. Three different types of non-wood implants—carbon fibres, glass fibres, and aluminium were glued with epoxy resin (ER), thermoplastic 1-k polyurethane adhesives (PUR), structural polyurethane adhesives (PUR 2 and PUR 3), and polyvinyl acetate (PVAc) adhesives and bonds were tested for shear strength (SS) according to ISO 6238:2018. Results of the bond quality expressed as the ultimate load to failure and displacement were recorded using the universal mechanical testing machine in combination with the digital image correlation (DIC) method. Before the shear test, all the samples were conditioned in dry and wet climatic conditions. Test results indicated that the application of PUR adhesives for bonding carbon and glass fibres with oak wood could sufficiently replace two-component ER, which is generally recommended for such purposes but is very challenging to utilise in industrial conditions. PVAc adhesives proved efficient only for combination with AL implants and in dry conditions. Aluminium sheets were shown to require surface pre-treatment, such as sanding and degreasing or a different type of adhesive to achieve sufficient adhesion.

implants ; carbon fibre ; glass fibre ; aluminium ; epoxy adhesives ; PUR adhesives ; PVAc adhesives ; oak wood

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Podaci o izdanju

14 (24)

2022.

5373

16

objavljeno

2073-4360

10.3390/polym14245373

Trošak objave rada u otvorenom pristupu

Povezanost rada

Drvna tehnologija, Građevinarstvo

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