Shape memory alloys are considered smart materials because of their singular thermo-mechanical properties, due to a thermoelastic martensitic transformation, enabling possible uses as actuators (because of mechanical recovery induced from temperature changes) and as dampers (because of hysteresis). NiTi wires for dampers in Civil Engineering had been characterized and tested in facilities. Guaranteed performance needs to know behavior during fatigue life and knowledge of effects in the event of extreme conditions, as eventual overstraining. In this work, we check the possibilities to absorb mechanical energy on the fatigue life depending on stress level and explore the consequences of overstraining the material during installation, the poss...
The rational design of smart actuators based on shape memory alloys requires reliable strength data ...
An investigation into the thermo-mechanical response of trained Ni–Ti shape memory alloy (SMA) wires...
The rational design of smart actuators based on shape memory alloys requires reliable strength data ...
Shape memory alloys are considered smart materials because of their singular thermo-mechanical prope...
The singular properties of Shape Memory Alloys (SMA), which are due to a thermoelastic martensitic t...
The singular properties of Shape Memory Alloys (SMA), which are due to a thermoelastic martensitic t...
The effect of intermittent overload cycles (OLCs) on the fatigue life of NiTi wires has been investi...
A few years ago, a unique way to use shape memory alloys for actuation purposes was proposed, involv...
A few years ago, a unique way to use shape memory alloys for actuation purposes was proposed, involv...
The availability of engineering strength data on shape memory alloys (SMAs) under cyclic thermal act...
The availability of engineering strength data on shape memory alloys (SMAs) under cyclic thermal act...
The thermo-mechanical properties of Shape Memory Alloys (SMA) as smart materials suggest their appli...
The effect of intermittent overload cycles (OLCs) on the fatigue life of NiTi wires has been investi...
Influence of stored elastic strain energy, Eelse, on thermo-mechanical fatigue behaviour of NiTi sha...
Influence of stored elastic strain energy, Eelse, on thermo-mechanical fatigue behaviour of NiTi sha...
The rational design of smart actuators based on shape memory alloys requires reliable strength data ...
An investigation into the thermo-mechanical response of trained Ni–Ti shape memory alloy (SMA) wires...
The rational design of smart actuators based on shape memory alloys requires reliable strength data ...
Shape memory alloys are considered smart materials because of their singular thermo-mechanical prope...
The singular properties of Shape Memory Alloys (SMA), which are due to a thermoelastic martensitic t...
The singular properties of Shape Memory Alloys (SMA), which are due to a thermoelastic martensitic t...
The effect of intermittent overload cycles (OLCs) on the fatigue life of NiTi wires has been investi...
A few years ago, a unique way to use shape memory alloys for actuation purposes was proposed, involv...
A few years ago, a unique way to use shape memory alloys for actuation purposes was proposed, involv...
The availability of engineering strength data on shape memory alloys (SMAs) under cyclic thermal act...
The availability of engineering strength data on shape memory alloys (SMAs) under cyclic thermal act...
The thermo-mechanical properties of Shape Memory Alloys (SMA) as smart materials suggest their appli...
The effect of intermittent overload cycles (OLCs) on the fatigue life of NiTi wires has been investi...
Influence of stored elastic strain energy, Eelse, on thermo-mechanical fatigue behaviour of NiTi sha...
Influence of stored elastic strain energy, Eelse, on thermo-mechanical fatigue behaviour of NiTi sha...
The rational design of smart actuators based on shape memory alloys requires reliable strength data ...
An investigation into the thermo-mechanical response of trained Ni–Ti shape memory alloy (SMA) wires...
The rational design of smart actuators based on shape memory alloys requires reliable strength data ...