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Multiple tenons - Numerical studies on local reinforcement and geometrical optimisation

Timo Claus, Werner Seim

Abstract

Based on experimental investigations of multiple tenon joints, a finite element model with cohesive elements was developed to consider non-linear component behaviour in a otherwise linear-elastic material model. The model was created to vary a large number of geometrical influences on the load capacity of the wood-to-wood joint. Thus, complex experimental investigations were replaced by numerical determination. The comparable maximum shear force at the connection was used to assess different multiple tenon configurations. Optimal tenon ratio (tenon length to tenon height) was determined to 1.0. The investigation has shown that a form-fitting structure leads to higher load capacities when a gap between the connection partners is considered. Additional reinforcements of the wooden joint were developed and used to predict following experimental results.
OriginalspracheEnglisch
TitelProceedings of the World Conference on Timber Engineering (WCTE 2016)
Redakteure/-innenJosef Eberhardsteiner, Wolfgang Winter, Alireza Fadai, Martina Pöll
ErscheinungsortWien
VerlagTechnische Universität Wien
Seitenumfang8
ISBN (elektronisch)978-390303900-1
PublikationsstatusVeröffentlicht - 2016
Extern publiziertJa
VeranstaltungWorld Conference on Timber Engineering (WCTE 2016) - Wien, Österreich
Dauer: 22 Aug. 201625 Aug. 2016

Publikationsreihe

NameWCTE 2016 - World Conference on Timber Engineering

Tagung/Konferenz

Tagung/KonferenzWorld Conference on Timber Engineering (WCTE 2016)
Land/GebietÖsterreich
OrtWien
Zeitraum22/08/1625/08/16

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