This paper presents an enhanced coupled axial-shear model for the monotonic and cyclic behavior of Cross Laminated Timber (CLT) panel – angle bracket connections. The proposed model accounts for the degradation phenomena due to cyclic loading that may affect strength, unloading and re-loading stiffnesses. The main parameters necessary to define the constitutive laws of the model are evaluated by linear regression analyses performed on the data obtained by an extensive experimental campaign specifically designed and carried out at the University of Bologna on CLT panel – angle bracket connections. After the first phase of model calibration, a comparison between numerical and experimental results from both monotonic and cyclic test series are performed to validate the model. These analyses demonstrate the effectiveness of the proposed model in representing the coupled response of angle bracket connections under simultaneous application of axial and shear forces

Angle bracket connections for CLT structures : experimental characterization and numerical modelling

Saetta, Anna;Talledo, Diego
2018-01-01

Abstract

This paper presents an enhanced coupled axial-shear model for the monotonic and cyclic behavior of Cross Laminated Timber (CLT) panel – angle bracket connections. The proposed model accounts for the degradation phenomena due to cyclic loading that may affect strength, unloading and re-loading stiffnesses. The main parameters necessary to define the constitutive laws of the model are evaluated by linear regression analyses performed on the data obtained by an extensive experimental campaign specifically designed and carried out at the University of Bologna on CLT panel – angle bracket connections. After the first phase of model calibration, a comparison between numerical and experimental results from both monotonic and cyclic test series are performed to validate the model. These analyses demonstrate the effectiveness of the proposed model in representing the coupled response of angle bracket connections under simultaneous application of axial and shear forces
2018
Inglese
191
95
113
19
Internazionale
Esperti anonimi
Angle bracket connection, Axial-shear interaction, Coupled numerical model, Hysteretic law
no
none
1. Contributo su Rivista::1.1 Articolo su Rivista
info:eu-repo/semantics/article
262
Pozza, Luca; Saetta, Anna; Savoia, Marco; Talledo, Diego
4
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11578/275012
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