Sustainable steel-timber joints for framed structures
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Date
2017Author
Bradford, Mark A.
Hassanieh, Amirhossein
Valipour, Hamid R.
Foster, Stephen J.
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The mechanical characteristics of steel-timber composite (STC) connections play an essential role in the safe and economical
design of hybrid STC structures and floor systems. Accordingly, this study investigates the load-slip behaviour of lap Laminated
Veneer Lumber (LVL) timber-steel plate composite joints. Push-out tests on four different types of STC lap joints connected by
coach screws (with and without a reinforcing nail plate), high-strength bolts and a combination of glued and screwed joints are
reported, and the load-slip behaviour and failure modes of the connections are characterised. The use of a nail plate is found to be
effective in reinforcing the timber and in increasing the stiffness of STC lap joints with coach screws, but they do not produce a
significant improvement in their strength. A non-linear regression is carried out and an empirical load-slip formulation for STC lap
joints with coach screws and high strength bolted connectors is proposed in analytical form.
Issue date (year)
2017Author
Bradford, Mark A.Collections
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