The multi-directional mechanical behaviour of angle brackets and hold-downs (i.e. NINO and WKR) is investigated in this study by means of monotomc tests in tensile (Fl), in-plane shear (F2/3) and out-of-plane (F4) load configurations. The values of resistance and stiffness for each angle bracket were determined. For WKR hold-downs the load acting on anchor bolt were measured through a load cell. The analyses of results showed that the tested connectors are characterized by significant strength and stiffness for different load configurations, as reported in other experimental campaign for similar connectors where the multi-directional behaviour was investigated.
Experimental Characterization of the Multi-Directional Behaviour of Angle Brackets and Hold-Downs / Fanti, R.; Polastr, A.; Casagrande, D.; Callegari, E.; Ra-Mazzini, A.; Sestigiani, L.; Lang, P.. - 3:(2023), pp. 1305-1311. (Intervento presentato al convegno 13th World Conference on Timber Engineering: Timber for a Livable Future, WCTE 2023 tenutosi a Oslo, Norway nel 19-22 June 2023).
Experimental Characterization of the Multi-Directional Behaviour of Angle Brackets and Hold-Downs
Casagrande D.;
2023-01-01
Abstract
The multi-directional mechanical behaviour of angle brackets and hold-downs (i.e. NINO and WKR) is investigated in this study by means of monotomc tests in tensile (Fl), in-plane shear (F2/3) and out-of-plane (F4) load configurations. The values of resistance and stiffness for each angle bracket were determined. For WKR hold-downs the load acting on anchor bolt were measured through a load cell. The analyses of results showed that the tested connectors are characterized by significant strength and stiffness for different load configurations, as reported in other experimental campaign for similar connectors where the multi-directional behaviour was investigated.File | Dimensione | Formato | |
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