Parameters of wood welding: A study with infrared thermography
Version
Published
Date Issued
2006
Author(s)
Type
Article
Abstract
Welding of wood is a well-known joining procedure that offers several advantages over traditional mechanical fasteners or gluing. During welding, extensive solid-state transformation phases occur in the so-called melting zone and the heat-affected zone. The nature and the extension of such transformations are correlated to the energy input and thus to the heat generated during the process at the wood joint interface. In the present work the influence of the welding parameters and wood grain orientation on the temperature profile and distribution and final strength of welded connections was investigated. For this purpose, the characteristics of the joints were evaluated with both destructive and non-destructive techniques. Non-destructive evaluation was performed with infrared thermography, which allowed measurement of the maximal and average peak temperature, temperature profile and distribution, and rate of temperature increase. Thus, this technique can also be used to detect welding defects and to provide information on material modification during welding.
Subjects
Q Science (General)
T Technology (General)
TA Engineering (General). Civil engineering (General)
TJ Mechanical engineering and machinery
Publisher DOI
Journal
Holzforschung
ISSN
1437-434X
Related URL
Volume
60
Issue
4
Publisher
De Gruyter
Submitter
Ganne-ChédevilleC
Citation apa
Ganne-Chédeville, C., Properzi, M., Pizzi, A., Leban, J.-M., & Pichelin, F. (2006). Parameters of wood welding: A study with infrared thermography. In Holzforschung (Vol. 60, Issue 4). De Gruyter. https://doi.org/10.24451/arbor.9453
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