AbstractThe objective of the study is to explore the use of two promising materials, i.e., ductile fiber reinforced cement-based composites (DFRCCs) and shape memory alloys (SMA), in structural beams for enhanced seismic performance. DFRCCs are distinguished from regular concrete materials by their tensile strain hardening behavior accompanying by multiple hairline cracks. The unique tensile behavior in the material scale transforms into the enhanced ductility, shear and moment resistance, and damage tolerance in the structural scale. SMAs, a type of smart materials, are featured by their shape memory effect and superelasticity. The properties allow deformed SMAs with a strain as large as 8% to recover their original shape. The cyclic behav...
Self-centering structural systems are getting attention due to their ability of reducing damage and ...
Superelastic Shape Memory Alloys (SE-SMA) have provided a viable novel alternative to conventional s...
The study on application of Shape Memory Alloys (SMA) in had been done previously with different met...
AbstractThe objective of the study is to explore the use of two promising materials, i.e., ductile f...
A reinforced concrete beam with shape memory alloy rebar (SMA) is a novel form of smart beam used in...
Shape Memory Alloys (SMAs) and High-Performance Fiber Reinforced Concretes (HPFRCs) are innovative m...
For many years, steel has been used as the primary reinforcing material for concrete structures. Des...
A major sustainability issue for reinforced concrete (RC) structures is the residual deformations ca...
Superelastic shape memory alloys (SMAs) are a class of metallic alloys that have the unique property...
Steel reinforced concrete (RC) framed structures are seismically designed for safety, where the eart...
The ability to adjust structural response to external loading and ensure structural safety and servi...
Large residual strain in reinforced concrete structures after a seismic event is a major concern for...
[EN] In the design of concrete buildings in seismic zones, ductility is normally used to reduce desi...
Buildings in high seismic regions are prone to severe damage and collapse during earthquakes due to ...
To safeguard against the loss of life and to maintain integrity, reinforced concrete structures are ...
Self-centering structural systems are getting attention due to their ability of reducing damage and ...
Superelastic Shape Memory Alloys (SE-SMA) have provided a viable novel alternative to conventional s...
The study on application of Shape Memory Alloys (SMA) in had been done previously with different met...
AbstractThe objective of the study is to explore the use of two promising materials, i.e., ductile f...
A reinforced concrete beam with shape memory alloy rebar (SMA) is a novel form of smart beam used in...
Shape Memory Alloys (SMAs) and High-Performance Fiber Reinforced Concretes (HPFRCs) are innovative m...
For many years, steel has been used as the primary reinforcing material for concrete structures. Des...
A major sustainability issue for reinforced concrete (RC) structures is the residual deformations ca...
Superelastic shape memory alloys (SMAs) are a class of metallic alloys that have the unique property...
Steel reinforced concrete (RC) framed structures are seismically designed for safety, where the eart...
The ability to adjust structural response to external loading and ensure structural safety and servi...
Large residual strain in reinforced concrete structures after a seismic event is a major concern for...
[EN] In the design of concrete buildings in seismic zones, ductility is normally used to reduce desi...
Buildings in high seismic regions are prone to severe damage and collapse during earthquakes due to ...
To safeguard against the loss of life and to maintain integrity, reinforced concrete structures are ...
Self-centering structural systems are getting attention due to their ability of reducing damage and ...
Superelastic Shape Memory Alloys (SE-SMA) have provided a viable novel alternative to conventional s...
The study on application of Shape Memory Alloys (SMA) in had been done previously with different met...