Base isolation is the most popular seismic protection technique for civil engineering structures. However, research has revealed that the traditional base isolation system due to its passive nature is vulnerable to two kinds of earthquakes, i.e. the near-fault and far-fault earthquakes. A great deal of effort has been dedicated to improve the performance of the traditional base isolation system for these two types of earthquakes. This paper presents a recent research breakthrough on the development of a novel adaptive seismic isolation system as the quest for ultimate protection for civil structures, utilizing the field-dependent property of the magnetorheological elastomer (MRE). A novel adaptive seismic isolator was developed as the key e...
© 2017 IOP Publishing Ltd. This paper presents research on the phenomenological model of an adaptive...
Magnetorheological elastomer (MRE), as a field-dependent smart material, has been widely applied on ...
The paper presents an investigation about a magneto-rheological elastomeric (MRE) pad to be adopted ...
One of the main shortcomings in current base isolation design/practice is lack of adaptability. As a...
Base isolation is the most popular seismic protection technique for civil engineering structures. Ho...
This paper presents a recent research breakthrough on the development of a novel adaptive seismic is...
Base isolation is the most popular seismic protection technique for civil structures. However, resea...
Inspired by its controllable and field-dependent stiffness/damping properties, there has been increa...
Seismic base isolation has been a widely adopted technique for earthquake protection of civil infras...
Seismic base isolation has been a widely adopted technique for earthquake protection of civil infras...
Copyright © 2015 by ASME. This paper presents a recent research advance on the development of a nove...
© 2016 Techno-Press, Ltd. One of the main shortcomings in the current passive base isolation system ...
Magnetorheological elastomer (MRE) is known for its field-sensitive shear modulus and damping proper...
Protecting civil engineering structures from uncontrollable events such as earthquakes while maintai...
In the past decades, base isolation techniques have become increasingly popular for seismic protecti...
© 2017 IOP Publishing Ltd. This paper presents research on the phenomenological model of an adaptive...
Magnetorheological elastomer (MRE), as a field-dependent smart material, has been widely applied on ...
The paper presents an investigation about a magneto-rheological elastomeric (MRE) pad to be adopted ...
One of the main shortcomings in current base isolation design/practice is lack of adaptability. As a...
Base isolation is the most popular seismic protection technique for civil engineering structures. Ho...
This paper presents a recent research breakthrough on the development of a novel adaptive seismic is...
Base isolation is the most popular seismic protection technique for civil structures. However, resea...
Inspired by its controllable and field-dependent stiffness/damping properties, there has been increa...
Seismic base isolation has been a widely adopted technique for earthquake protection of civil infras...
Seismic base isolation has been a widely adopted technique for earthquake protection of civil infras...
Copyright © 2015 by ASME. This paper presents a recent research advance on the development of a nove...
© 2016 Techno-Press, Ltd. One of the main shortcomings in the current passive base isolation system ...
Magnetorheological elastomer (MRE) is known for its field-sensitive shear modulus and damping proper...
Protecting civil engineering structures from uncontrollable events such as earthquakes while maintai...
In the past decades, base isolation techniques have become increasingly popular for seismic protecti...
© 2017 IOP Publishing Ltd. This paper presents research on the phenomenological model of an adaptive...
Magnetorheological elastomer (MRE), as a field-dependent smart material, has been widely applied on ...
The paper presents an investigation about a magneto-rheological elastomeric (MRE) pad to be adopted ...