Passive energy dissipation (PED) devices have been implemented to enhance structural performance by reducing seismically induced structural damage. In this article, metallic dampers are defined to be structural fuses (SF) when they are designed such that all damage is concentrated on the PED devices, allowing the primary structure to remain elastic. Following a damaging earthquake, only the dampers would need to be replaced, making repair works easier and more expedient. Furthermore, SF introduce self-centering capabilities to the structure in that, once the ductile fuse devices have been removed, the elastic structure would return to its original position. A comprehensive parametric study is conducted, leading to the formulation of the SF ...
This paper describes the development of innovative seismic technologies for cold-formed steel struct...
The basic principle of conventional earthquake-resistant design that has been applied for the last 7...
Metallic yielding damper is an example of commonly used as a sacrificial structural element to dissi...
Passive energy dissipation (PED) devices have been implemented to enhance structural performance by ...
Passive energy dissipation (PED) devices have been implemented to enhance structural performance by ...
Passive energy dissipation (PED) devices have been implemented to enhance structural performance by ...
Passive energy dissipation (PED devices have been implemented to enhance structural performance by r...
Passive energy devices (PED) are useful to enhance structural performance by reducing seismically in...
Seismic design relies on inelastic deformations through hysteretic behavior. However, this translate...
This study presents a novel passive metallic damper, Pipe-Fuse Damper (PFD), to improve the seismic ...
Earthquakes lead frequently to a large amount of damage. Conventional frames (moment resisting, conc...
Seismic design relies on inelastic deformations through hysteretic behavior. However, this translate...
Recent earthquakes worldwide have shown that even countries with modern building codes suffer signif...
In this paper, a new passive earthquake damper termed as Bar-Fuse Damper (BFD) is presented for fram...
This report summarizes the results of a parametric study of a controlled rocking seismic lateral re...
This paper describes the development of innovative seismic technologies for cold-formed steel struct...
The basic principle of conventional earthquake-resistant design that has been applied for the last 7...
Metallic yielding damper is an example of commonly used as a sacrificial structural element to dissi...
Passive energy dissipation (PED) devices have been implemented to enhance structural performance by ...
Passive energy dissipation (PED) devices have been implemented to enhance structural performance by ...
Passive energy dissipation (PED) devices have been implemented to enhance structural performance by ...
Passive energy dissipation (PED devices have been implemented to enhance structural performance by r...
Passive energy devices (PED) are useful to enhance structural performance by reducing seismically in...
Seismic design relies on inelastic deformations through hysteretic behavior. However, this translate...
This study presents a novel passive metallic damper, Pipe-Fuse Damper (PFD), to improve the seismic ...
Earthquakes lead frequently to a large amount of damage. Conventional frames (moment resisting, conc...
Seismic design relies on inelastic deformations through hysteretic behavior. However, this translate...
Recent earthquakes worldwide have shown that even countries with modern building codes suffer signif...
In this paper, a new passive earthquake damper termed as Bar-Fuse Damper (BFD) is presented for fram...
This report summarizes the results of a parametric study of a controlled rocking seismic lateral re...
This paper describes the development of innovative seismic technologies for cold-formed steel struct...
The basic principle of conventional earthquake-resistant design that has been applied for the last 7...
Metallic yielding damper is an example of commonly used as a sacrificial structural element to dissi...