Although the steel slit dampers commonly utilized for aseismic design approach can dissipate considerable energy created by the yielding of base materials, large residual deformation may happen in the entire frame structure. After strong external excitation, repair costs will be incurred in restoring a structure to its original condition and to replace broken components. For this reason, alternative recentering devices characterized by smart structures, which mitigate the damage for such steel energy dissipation slit dampers, are developed in this study. These devices, feasibly functioning as seismic restrainers, can be improved by implementing superelastic shape memory alloy (SMA) bending bars in a parallel motion with the steel energy-dis...
This study developed the technical base for the design of shape-memory alloy energy dissipation devi...
ABSTRACT: The paper presents a preliminary study on feasibility using shape memory alloy (SMA) passi...
Buildings designed and constructed using current seismic design codes experience nonlinear deformati...
Although the steel slit dampers commonly utilized for aseismic design approach can dissipate conside...
In this paper, the superelastic shape memory alloy (SMA) slit damper system as an alternative design...
This paper summarizes the development of a new steel energy dissipative device designed for earthqua...
The present paper deals with the design and the mechanical modeling of a seismic bracing system with...
AbstractThis paper summarizes the experimental campaign carried out for the development of new steel...
Superelastic Shape Memory Alloy (SMA) is accepted when it used as connection in steel structures. Th...
Self-centering earthquake-resistant structures have received increased attention due to their abilit...
Feasibility design of a damper based on superelastic shape memory alloys (SMAs) is presented. The de...
A deeper understanding of the effectiveness of adopting devices mounting shape memory alloy (SMA) el...
The researches have recently progressed toward the use of the superelastic shape memory alloys (SMAs...
The objective of the present work is to propose a new seismic isolation device based on superelastic...
Inelastic deformation of metallic materials is one of the most effective mechanisms for the dissipat...
This study developed the technical base for the design of shape-memory alloy energy dissipation devi...
ABSTRACT: The paper presents a preliminary study on feasibility using shape memory alloy (SMA) passi...
Buildings designed and constructed using current seismic design codes experience nonlinear deformati...
Although the steel slit dampers commonly utilized for aseismic design approach can dissipate conside...
In this paper, the superelastic shape memory alloy (SMA) slit damper system as an alternative design...
This paper summarizes the development of a new steel energy dissipative device designed for earthqua...
The present paper deals with the design and the mechanical modeling of a seismic bracing system with...
AbstractThis paper summarizes the experimental campaign carried out for the development of new steel...
Superelastic Shape Memory Alloy (SMA) is accepted when it used as connection in steel structures. Th...
Self-centering earthquake-resistant structures have received increased attention due to their abilit...
Feasibility design of a damper based on superelastic shape memory alloys (SMAs) is presented. The de...
A deeper understanding of the effectiveness of adopting devices mounting shape memory alloy (SMA) el...
The researches have recently progressed toward the use of the superelastic shape memory alloys (SMAs...
The objective of the present work is to propose a new seismic isolation device based on superelastic...
Inelastic deformation of metallic materials is one of the most effective mechanisms for the dissipat...
This study developed the technical base for the design of shape-memory alloy energy dissipation devi...
ABSTRACT: The paper presents a preliminary study on feasibility using shape memory alloy (SMA) passi...
Buildings designed and constructed using current seismic design codes experience nonlinear deformati...