Practical applications of the Shape Memory Effect (SME) involves frequently repetitive operations. Therefore, it's essential to have knowledge of the properties behavior related to SME under working conditions. The thermomechanical fatigue of Ti-Ni-Cu thin wires loaded by static uniaxial tensile stress and submitted to thermal cycling has been studied. The test samples were cycled until failure in oil bath, cooled by this one and heated by electrical current. One modified Wöhler curve has been plotted and the influences of the applied stress and of the number of thermal cycles on the shape memory properties has been analyzed. It is shown that the martensitic transformation associated to SME changes according to stress level and/or number of...
Martensitic Ti-rich NiTi intermetallics are broadly used in various cyclic applications as actuators...
In this paper, the physical properties of a Ti-45.0Ni-5.0Cu (%at) alloy are studied after failure (r...
An investigation into the thermo-mechanical response of trained Ni–Ti shape memory alloy (SMA) wires...
Changes of memory properties and fatigue life of the Shape Memory Alloys (SMA) are very important fo...
Changes of memory properties and fatigue life of the Shape Memory Alloys (SMA) are very important fo...
Shape memory alloys, particularly in the form of thin wires, are becoming increasingly attractive in...
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...
Composites containing shape memory alloys in the form of fibres are well-known for their use as actu...
Composites containing shape memory alloys in the form of fibres are well-known for their use as actu...
In this work, several tests of thermal cycling under constant load are carried out on Ti-45.0Ni-5.0C...
In this work, several tests of thermal cycling under constant load are carried out on Ti-45.0Ni-5.0C...
In this work, several tests of thermal cycling under constant load are carried out on Ti-45.0Ni-5.0C...
In this paper, the physical properties of a Ti-45.0Ni-5.0Cu (%at) alloy are studied after failure (r...
The availability of engineering strength data on shape memory alloys (SMAs) under cyclic thermal act...
Martensitic Ti-rich NiTi intermetallics are broadly used in various cyclic applications as actuators...
In this paper, the physical properties of a Ti-45.0Ni-5.0Cu (%at) alloy are studied after failure (r...
An investigation into the thermo-mechanical response of trained Ni–Ti shape memory alloy (SMA) wires...
Changes of memory properties and fatigue life of the Shape Memory Alloys (SMA) are very important fo...
Changes of memory properties and fatigue life of the Shape Memory Alloys (SMA) are very important fo...
Shape memory alloys, particularly in the form of thin wires, are becoming increasingly attractive in...
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...
Composites containing shape memory alloys in the form of fibres are well-known for their use as actu...
Composites containing shape memory alloys in the form of fibres are well-known for their use as actu...
In this work, several tests of thermal cycling under constant load are carried out on Ti-45.0Ni-5.0C...
In this work, several tests of thermal cycling under constant load are carried out on Ti-45.0Ni-5.0C...
In this work, several tests of thermal cycling under constant load are carried out on Ti-45.0Ni-5.0C...
In this paper, the physical properties of a Ti-45.0Ni-5.0Cu (%at) alloy are studied after failure (r...
The availability of engineering strength data on shape memory alloys (SMAs) under cyclic thermal act...
Martensitic Ti-rich NiTi intermetallics are broadly used in various cyclic applications as actuators...
In this paper, the physical properties of a Ti-45.0Ni-5.0Cu (%at) alloy are studied after failure (r...
An investigation into the thermo-mechanical response of trained Ni–Ti shape memory alloy (SMA) wires...