The high seismic performance of steel frame structures equipped with FREEDAM dissipative joints has been demonstrated through experimental and extensive numerical studies in the framework of a recent RFCS project. In particular, the performance of moment-resisting frames (MRFs) and dual concentrically braced frames (D-CBFs) was thoroughly investigated under seismic actions. Although the research has shown that such structures can dissipate the earthquake-induced energy with limited or even no damage, their robustness in case of accidental actions was not yet addressed. Hence, as required by the current version of Eurocodes, their ability to survive accidental events should be demonstrated. This paper presents the robustness assessment perfo...
The seismic design rules currently recommended by modern codes are based on the so-called capacity d...
The DiSTEEL research project has developed a set of practical performance-based design guidelines fo...
Background: The deformation capacity of beam-to-column connections strongly influences the robustnes...
The high seismic performance of steel frame structures equipped with FREEDAM dissipative joints has ...
The objective of the research program FREEDAM (FREE from DAMage steel connections) is the developmen...
In seismic design of steel structures, the “dual-steel” concept concerns the combined use of High St...
The present paper deals with the seismic behaviour of steel structures which are designed in the att...
peer reviewedRobustness of Moment Resistant Frames (MRFs) designed according to current seismic code...
According to current seismic design codes, in the case of rare seismic events, structures are design...
The use of supplementary dissipative devices is an effective design strategy to improve the seismic ...
The seismic design rules currently recommended by modern codes are based on the so-called capacity d...
The DiSTEEL research project has developed a set of practical performance-based design guidelines fo...
Background: The deformation capacity of beam-to-column connections strongly influences the robustnes...
The high seismic performance of steel frame structures equipped with FREEDAM dissipative joints has ...
The objective of the research program FREEDAM (FREE from DAMage steel connections) is the developmen...
In seismic design of steel structures, the “dual-steel” concept concerns the combined use of High St...
The present paper deals with the seismic behaviour of steel structures which are designed in the att...
peer reviewedRobustness of Moment Resistant Frames (MRFs) designed according to current seismic code...
According to current seismic design codes, in the case of rare seismic events, structures are design...
The use of supplementary dissipative devices is an effective design strategy to improve the seismic ...
The seismic design rules currently recommended by modern codes are based on the so-called capacity d...
The DiSTEEL research project has developed a set of practical performance-based design guidelines fo...
Background: The deformation capacity of beam-to-column connections strongly influences the robustnes...