Solid wood joints by in situ welding of structural wood constituents
Version
Published
Date Issued
2004
Author(s)
Gfeller, Balz
Pizzi, Antonio
Zanetti, Michela
Properzi, Milena
Lehmann, Mario
Delmotte, Luc
Type
Article
Language
English
Subjects
Abstract
Mechanicallyinduced wood flow welding, without any adhesive, is here shown to rapidly yield wood joints satisfying the relevant requirements for structural application. The mechanism of mechanicallyinduced vibrational wood flow welding is shown to be due mostly to the melting and flowing of the amorphous polymer materials interconnecting wood cells, mainly lignin, but also some hemicelluloses. This causes the partial detachment of long wood cells and wood fibres and the formation of an entanglement network in a matrix of melted material which then solidifies. Thus, it forms a wood cell/fibre entanglement network composite having a molten lignin polymer matrix. During the welding period, some of the detached wood fibres no longer held by the interconnecting material are pushed out of the joint as excess fibre. Crosslinking chemical reactions of lignin and of carbohydratederived furfural also occur. Their presence has been identified by CPMAS C-13 NMR. These reactions are, however, relatively minor contributors during the very short welding period. Their contribution increases after welding has finished, explaining why relatively longer holding times under pressure after the end of welding contribute strongly to obtaining a good bond.
Subjects
Q Science (General)
T Technology (General)
TA Engineering (General). Civil engineering (General)
Publisher DOI
Journal or Serie
Holzforschung
ISSN
1437-434X
Volume
58
Issue
1
Publisher
De Gruyter
Submitter
HaddadS
Citation apa
Gfeller, B., Pizzi, A., Zanetti, M., Properzi, M., Pichelin, F., Lehmann, M., & Delmotte, L. (2004). Solid wood joints by in situ welding of structural wood constituents. In Holzforschung (Vol. 58, Issue 1). De Gruyter. https://doi.org/10.24451/arbor.11536
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