This paper deals with the conception and characterization of an innovative connection for cross-laminated timber (CLT) panels. The connection is designed to provide an adequate level of dissipative capacity to CLT structures also when realized with large horizontal panels and therefore prone to fragile shear sliding failure. The connector, named X-bracket, has been theorized and designed by means of numerical parametric analyses. Furthermore, its cyclic behavior has been verified with experimental tests and compared to that of traditional connectors. Numerical simulations of cyclic tests of different CLT walls anchored to the foundation with X-brackets were also performed to assess their improved seismic performances. Finally, the analysis ...
The research presented herein investigated the in-plane performance of cross-laminated timber (CLT) ...
Cross-Laminated Timber (CLT) is gaining a significant popularity among the structural products as a ...
This work presents a numerical macro-element model able to simulate the dynamic response of an innov...
This paper deals with the conception and characterization of an innovative connection for cross-lami...
The aim of this paper is to analyze the possibility to improve the seismic performance of cross-lami...
This paper presents an innovative steel connection specifically developed to provide increased dissi...
The seismic vulnerability of existing RC framed buildings in seismic-prone areas requires affordable...
This article aims to propose an innovative type of angle to be used in substitution of the hold-down...
The paper describes the design process and experimental testing of an innovative dissipative connect...
An extended experimental programme on typical cross-laminated (CLT) connections was performed at IVA...
The paper presents some experimental data and phenomenon on bracket anchor connections for Cross-Lam...
A timber building made of cross-laminated timber (CLT) panels is a modular system where all panels a...
The characterization of the behaviour of connectors used in Cross-laminated Timber (CLT) structures ...
The research presented herein investigated the in-plane performance of cross-laminated timber (CLT) ...
Cross-Laminated Timber (CLT) is gaining a significant popularity among the structural products as a ...
This work presents a numerical macro-element model able to simulate the dynamic response of an innov...
This paper deals with the conception and characterization of an innovative connection for cross-lami...
The aim of this paper is to analyze the possibility to improve the seismic performance of cross-lami...
This paper presents an innovative steel connection specifically developed to provide increased dissi...
The seismic vulnerability of existing RC framed buildings in seismic-prone areas requires affordable...
This article aims to propose an innovative type of angle to be used in substitution of the hold-down...
The paper describes the design process and experimental testing of an innovative dissipative connect...
An extended experimental programme on typical cross-laminated (CLT) connections was performed at IVA...
The paper presents some experimental data and phenomenon on bracket anchor connections for Cross-Lam...
A timber building made of cross-laminated timber (CLT) panels is a modular system where all panels a...
The characterization of the behaviour of connectors used in Cross-laminated Timber (CLT) structures ...
The research presented herein investigated the in-plane performance of cross-laminated timber (CLT) ...
Cross-Laminated Timber (CLT) is gaining a significant popularity among the structural products as a ...
This work presents a numerical macro-element model able to simulate the dynamic response of an innov...