Two families of passive seismic control devices exploiting the peculiar properties of Shape Memory Alloy (SMA) kernel components have been implemented and tested within the MANSIDE project (Memory Alloys for New Seismic Isolation and Energy Dissipation Devices). They are special braces for framed structures and isolation devices for buildings and bridges. Their most important feature is their extreme versatility, i.e. the possibility to obtain a wide range of cyclic behaviour (from supplemental and fully re-centring to highly dissipating) by simply varying the number and/or the characteristics of the SMA components. Other remarkable properties are their extraordinary fatigue resistance under large strain cycles and their great durability a...
Superelasticity, a unique property of shape memory alloys (SMAs), allows the material to recover aft...
The objective of this work is to investigate the feasibility of a new seismic isolation device conce...
The present paper deals with the design and the mechanical modeling of a seismic bracing system with...
Two families of passive seismic control devices exploiting the peculiar properties of Shape Memory A...
exploiting the great potential of Shape Memory Alloys (SMA) in the field of passive seismic protecti...
In the last two decades, there has been an increasing interest in structural engineering control met...
The mechanical properties of Shape Memory Alloys (SMA.), used properly in seismic retrofit could ach...
ABSTRACT: Shape memory alloys (SMAs) are a class of alloys that possess numerous unique characterist...
The objective of this work is to investigate the feasibility of a new seismic isolation device conce...
Two full-scale isolation re-centring devices, embodying NiTi Shape Memory Alloy elements, were desig...
Shape Memory Alloys (SMAs) have great potential for the use in the field of civil engineering. The a...
An extensive experimental program of shaking table tests on reduced-scale structural models was carr...
An extensive experimental program of shaking table tests on reduced-scale structural models was carr...
The objective of this work is to investigate the feasibility of a new seismic isolation device conce...
A deeper understanding of the effectiveness of adopting devices mounting shape memory alloy (SMA) el...
Superelasticity, a unique property of shape memory alloys (SMAs), allows the material to recover aft...
The objective of this work is to investigate the feasibility of a new seismic isolation device conce...
The present paper deals with the design and the mechanical modeling of a seismic bracing system with...
Two families of passive seismic control devices exploiting the peculiar properties of Shape Memory A...
exploiting the great potential of Shape Memory Alloys (SMA) in the field of passive seismic protecti...
In the last two decades, there has been an increasing interest in structural engineering control met...
The mechanical properties of Shape Memory Alloys (SMA.), used properly in seismic retrofit could ach...
ABSTRACT: Shape memory alloys (SMAs) are a class of alloys that possess numerous unique characterist...
The objective of this work is to investigate the feasibility of a new seismic isolation device conce...
Two full-scale isolation re-centring devices, embodying NiTi Shape Memory Alloy elements, were desig...
Shape Memory Alloys (SMAs) have great potential for the use in the field of civil engineering. The a...
An extensive experimental program of shaking table tests on reduced-scale structural models was carr...
An extensive experimental program of shaking table tests on reduced-scale structural models was carr...
The objective of this work is to investigate the feasibility of a new seismic isolation device conce...
A deeper understanding of the effectiveness of adopting devices mounting shape memory alloy (SMA) el...
Superelasticity, a unique property of shape memory alloys (SMAs), allows the material to recover aft...
The objective of this work is to investigate the feasibility of a new seismic isolation device conce...
The present paper deals with the design and the mechanical modeling of a seismic bracing system with...