Mechanical behaviour of wood T-joints. Experimental and numerical investigation
Results of a double-shear single-dowel wood connection tested under monotonic quasi-static compression loading are presented and discussed in this paper. The wood used in this study was a pine wood, namely the Pinus pinaster species, which is one of the most important Portuguese species. Each conn...
Main Authors: | , , |
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Format: | Article |
Language: | English |
Published: |
Gruppo Italiano Frattura
2015-01-01
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Series: | Frattura ed Integrità Strutturale |
Subjects: | |
Online Access: | http://www.gruppofrattura.it/pdf/rivista/numero31/numero_31_art_3.pdf |
Summary: | Results of a double-shear single-dowel wood connection tested under monotonic quasi-static
compression loading are presented and discussed in this paper. The wood used in this study was a pine wood,
namely the Pinus pinaster species, which is one of the most important Portuguese species. Each connection
(specimen) consists of three wood members: a centre member, loaded in compression along the parallel-tograin
direction and two simply supported side members, loaded along the perpendicular-to-grain direction (Tconnection).
The load transfer between wood members was assured by means of a steel dowel, which is
representative of the most common joining technique applied for structural details in wooden structures. The
complete load-slip behaviour of the joint is obtained until failure. In particular, the values of the stiffness, the
ultimate loads and the ductility were evaluated. Additionally, this investigation proposed non-linear 3D finite
element models to simulate the T-joint behaviour. The interaction between the dowel and the wood members
was simulated using contact finite elements. A plasticity model, based on Hill’s criterion, was used to simulate
the joint ductility and cohesive damage modelling was applied to simulate the brittle failure modes (splitting)
observed in the side members of the joint. The simulation procedure allowed a satisfactory description of the
non-linear behaviour of the T-joint including the collapse prediction. |
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ISSN: | 1971-8993 1971-8993 |