This study proposes a performance-based seismic design (PBSD) method for steel braced frames with novel self-centering (SC) braces that utilizes shape memory alloys (SMA) as a kernel component. The presented PBSD method is essentially a modified version of the performance-based plastic design. A few concentrically braced frames with SC braces are designed as examples to illustrate the efficacy of the proposed design method. The seismic performance of the designed frames is examined at various seismic intensity levels. Results of nonlinear time-history analyses indicate that the designed SC braced frames can successfully achieve the prescribed performance objectives at three seismic hazard levels
In modular construction, individual modules are constructed at a controlled industrial environment b...
Self-centering structural systems are getting attention due to their ability of reducing damage and ...
Although conventional earthquake-resisting structural systems provide the life safety level during e...
This study proposes a performance-based seismic design (PBSD) method for steel braced frames with no...
Buildings designed and constructed using current seismic design codes experience nonlinear deformati...
Under severe earthquakes, steel concentrically braced frames (SCBFs) will experience large inelastic...
Concrete-filled buckling restrained braces (BRBs) was first developed in 1988 in Tokyo, Japan, to pr...
Modular steel buildings (MSBs) are widely used for one to six storey schools, apartments, and simila...
In order to improve the energy dissipation capacity and to reduce the residual deformation of civil ...
This paper introduces a review of self-centering steel frame systems for seismic-resistant structure...
Recently developed steel self-centering moment-resisting frames (SC-MRFs) have been analytically and...
Steel bracing members are widely used in steel structures to reduce lateral displacement and dissipa...
Designing steel structures with Concentric Braced Frame (CBF) lateral systems has been common in rec...
Expanding the use of smart braced frames to govern the seismic response of structures by providing d...
Self-centering earthquake-resistant structures have received increased attention due to their abilit...
In modular construction, individual modules are constructed at a controlled industrial environment b...
Self-centering structural systems are getting attention due to their ability of reducing damage and ...
Although conventional earthquake-resisting structural systems provide the life safety level during e...
This study proposes a performance-based seismic design (PBSD) method for steel braced frames with no...
Buildings designed and constructed using current seismic design codes experience nonlinear deformati...
Under severe earthquakes, steel concentrically braced frames (SCBFs) will experience large inelastic...
Concrete-filled buckling restrained braces (BRBs) was first developed in 1988 in Tokyo, Japan, to pr...
Modular steel buildings (MSBs) are widely used for one to six storey schools, apartments, and simila...
In order to improve the energy dissipation capacity and to reduce the residual deformation of civil ...
This paper introduces a review of self-centering steel frame systems for seismic-resistant structure...
Recently developed steel self-centering moment-resisting frames (SC-MRFs) have been analytically and...
Steel bracing members are widely used in steel structures to reduce lateral displacement and dissipa...
Designing steel structures with Concentric Braced Frame (CBF) lateral systems has been common in rec...
Expanding the use of smart braced frames to govern the seismic response of structures by providing d...
Self-centering earthquake-resistant structures have received increased attention due to their abilit...
In modular construction, individual modules are constructed at a controlled industrial environment b...
Self-centering structural systems are getting attention due to their ability of reducing damage and ...
Although conventional earthquake-resisting structural systems provide the life safety level during e...