In this work, a numerical procedure is proposed in order to evaluate the collapse load of multi-span masonry arch structures with externally bonded reinforcement (EBR), such as FRP, subject to debonding. The model of the structure is composed of quadrangular blocks with EBR applied on some sides of the blocks. The constitutive behaviour of the interface between to adjacent blocks is characterized by no tension, associated frictional sliding and crushing. The bonding between EBR and the masonry block is not perfect as the EBR can slide with respect to the block. The collapse load of the above-mentioned structural model is determined by the method of limit analysis. To this end, linear programming problems are implemented involving bot...
A homogenized full 3D limit analysis model for the evaluation of collapse loads of FRP–reinforced ma...
none4noAccording to recent design Codes and Recommendations, verification against debonding is imper...
In rigid block limit analysis of masonry structures, an infinite compressive is usually assumed at c...
In this work, a numerical procedure is proposed in order to evaluate the collapse load of multi-span...
In this work, the rigid block method is used to estimate the collapse load of multi-span arch struct...
We illustrate the application to the case of masonry arches of an original approach to limit analysi...
In this paper, the standard formulation for rigid block limit analysis is extended to simulate the e...
The limit analysis of masonry bridges is tackled by considering the interaction between arches, pier...
A homogenized full 3D limit analysis model for the evaluation of collapse loads of FRP-reinforced ma...
The present paper deals with the numerical evaluation of the in-plane collapse behaviour of unreinfo...
This paper deals with the numerical evaluation of the in-plane collapse behaviour of unreinforced ma...
The use of composite on the strengthening and retrofitting of masonry structures over the past few ...
The collapse load of masonry arches strengthened with FRP materials is determined. The arch is made ...
A homogenized full 3D limit analysis model for the evaluation of collapse loads of FRP–reinforced ma...
none4noAccording to recent design Codes and Recommendations, verification against debonding is imper...
In rigid block limit analysis of masonry structures, an infinite compressive is usually assumed at c...
In this work, a numerical procedure is proposed in order to evaluate the collapse load of multi-span...
In this work, the rigid block method is used to estimate the collapse load of multi-span arch struct...
We illustrate the application to the case of masonry arches of an original approach to limit analysi...
In this paper, the standard formulation for rigid block limit analysis is extended to simulate the e...
The limit analysis of masonry bridges is tackled by considering the interaction between arches, pier...
A homogenized full 3D limit analysis model for the evaluation of collapse loads of FRP-reinforced ma...
The present paper deals with the numerical evaluation of the in-plane collapse behaviour of unreinfo...
This paper deals with the numerical evaluation of the in-plane collapse behaviour of unreinforced ma...
The use of composite on the strengthening and retrofitting of masonry structures over the past few ...
The collapse load of masonry arches strengthened with FRP materials is determined. The arch is made ...
A homogenized full 3D limit analysis model for the evaluation of collapse loads of FRP–reinforced ma...
none4noAccording to recent design Codes and Recommendations, verification against debonding is imper...
In rigid block limit analysis of masonry structures, an infinite compressive is usually assumed at c...