A new phase observed in a nominal Ni30Pt20Ti50 (at.%) high temperature shape memory alloy has been characterized using transmission electron microscopy and 3-D atom probe tomography. This phase forms homogeneously in the B2 austenite matrix by a nucleation and growth mechanism and results in a concomitant increase in the martensitic transformation temperature of the base alloy. Although the structure of this phase typically contains a high density of faults making characterization difficult, it appears to be trigonal (-3m point group) with a(sub o) approx. 1.28 nm and c(sub o) approx. 1.4 nm. Precipitation of this phase increases the microhardness of the alloy substantially over that of the solution treated and quenched single-phase materia...
Ni50.6Ti49.4 single and Ni52Ti48 polycrystalline shape memory alloy samples were subjected to aging ...
NiTiFe shape memory alloys can undergo transformations between cubic, trigonal and monoclinic phases...
Ni-rich NiTi shape memory alloys (SMAs) are capable of attaining a wide range of transformation temp...
"Shape memory" is a unique property of certain alloys that, when deformed (within certain strain lim...
Shape-memory alloys are unique "smart materials" that can be used in a wide variety of adaptive or "...
High temperature shape memory alloys with operating temperatures above 100 deg C are in demand for u...
Interest in high-temperature shape memory alloys (HTSMA) has been growing in the aerospace, automoti...
TiNiPt shape memory alloys are particularly promising for use as solid state actuators in environmen...
Potential applications involving high-temperature shape memory alloys have been growing in recent ye...
The microstructure, transformation temperatures, basic tensile properties, shape memory behavior, an...
Ti⁻Ni⁻Pd shape memory alloys are promising candidates for high-temperature actuators operating at ab...
The present study investigates the high-temperature shape memory effect (SME) in heterophase Ni50.3T...
To date the commercial use of shape memory alloys (SMAs) has been mostly limited to binary NiTi allo...
This paper is dedicated to the first observations of the martensitic transformation (MT) and shape m...
NiTiFe shape memory alloys can undergo transformations between cubic, trigonal and monoclinic phases...
Ni50.6Ti49.4 single and Ni52Ti48 polycrystalline shape memory alloy samples were subjected to aging ...
NiTiFe shape memory alloys can undergo transformations between cubic, trigonal and monoclinic phases...
Ni-rich NiTi shape memory alloys (SMAs) are capable of attaining a wide range of transformation temp...
"Shape memory" is a unique property of certain alloys that, when deformed (within certain strain lim...
Shape-memory alloys are unique "smart materials" that can be used in a wide variety of adaptive or "...
High temperature shape memory alloys with operating temperatures above 100 deg C are in demand for u...
Interest in high-temperature shape memory alloys (HTSMA) has been growing in the aerospace, automoti...
TiNiPt shape memory alloys are particularly promising for use as solid state actuators in environmen...
Potential applications involving high-temperature shape memory alloys have been growing in recent ye...
The microstructure, transformation temperatures, basic tensile properties, shape memory behavior, an...
Ti⁻Ni⁻Pd shape memory alloys are promising candidates for high-temperature actuators operating at ab...
The present study investigates the high-temperature shape memory effect (SME) in heterophase Ni50.3T...
To date the commercial use of shape memory alloys (SMAs) has been mostly limited to binary NiTi allo...
This paper is dedicated to the first observations of the martensitic transformation (MT) and shape m...
NiTiFe shape memory alloys can undergo transformations between cubic, trigonal and monoclinic phases...
Ni50.6Ti49.4 single and Ni52Ti48 polycrystalline shape memory alloy samples were subjected to aging ...
NiTiFe shape memory alloys can undergo transformations between cubic, trigonal and monoclinic phases...
Ni-rich NiTi shape memory alloys (SMAs) are capable of attaining a wide range of transformation temp...