AbstractShape memory alloys (SMAs) are group of alloys that display anthropomorphic characteristics. These alloys recover their pre-deformed morphology when heated above their transition temperatures after being deformed in their lower temperature phase (martensitic phase). This unique material behavior is explored in industrial and technological applications where capacity for strain recovery is a key design parameter. Copper and iron based SMAs are largely viewed as potential cost effective substitute to Ni–Ti SMAs judging from their promising shape memory properties, damping capacity and other functional properties. Despite their outstanding potentials, the susceptibility of copper based SMAS to phase stabilization, transition hysteresis...
The objective of this research work was to develop new Fe-Mn-Si based shape memory alloys with prope...
This paper investigates the options and substitute of few Copper based shape memory alloys such as C...
Among different shape memory alloys, copper (Cu) based alloys were the most favourable alloys, becau...
Shape memory alloys (SMAs) are group of alloys that display anthropomorphic characteristics. These a...
AbstractShape memory alloys (SMAs) are group of alloys that display anthropomorphic characteristics....
Shape memory alloys (SMAs) have been extensively investigated because of their unique shape memory b...
Cu-based shape memory alloys have been hyped as the ‘heir’ and pragmatic substitute to NiTi alloys f...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Cata...
Shape Memory Alloys (SMAs) is a class of smart materials with the ability to remember the original s...
Microstructure and phase transformation in shape memory alloy Cu-Al (Fe addition: 9% Al, 4 % Fe) wer...
Some new results of literature concerning two important fields of shape memory alloys are analyzed a...
Shape memory alloys (SMAs) are a unique class of metals capable of recovering large strains either s...
Metal alloys that can ‘remember ’ their previous shape and return to it when required are known as s...
SummaryAmong different shape memory alloys, copper (Cu) based alloys were the most favourable alloys...
330a The aim of this work was to analyse the mechanisms of hindered internal passivation of silver b...
The objective of this research work was to develop new Fe-Mn-Si based shape memory alloys with prope...
This paper investigates the options and substitute of few Copper based shape memory alloys such as C...
Among different shape memory alloys, copper (Cu) based alloys were the most favourable alloys, becau...
Shape memory alloys (SMAs) are group of alloys that display anthropomorphic characteristics. These a...
AbstractShape memory alloys (SMAs) are group of alloys that display anthropomorphic characteristics....
Shape memory alloys (SMAs) have been extensively investigated because of their unique shape memory b...
Cu-based shape memory alloys have been hyped as the ‘heir’ and pragmatic substitute to NiTi alloys f...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Cata...
Shape Memory Alloys (SMAs) is a class of smart materials with the ability to remember the original s...
Microstructure and phase transformation in shape memory alloy Cu-Al (Fe addition: 9% Al, 4 % Fe) wer...
Some new results of literature concerning two important fields of shape memory alloys are analyzed a...
Shape memory alloys (SMAs) are a unique class of metals capable of recovering large strains either s...
Metal alloys that can ‘remember ’ their previous shape and return to it when required are known as s...
SummaryAmong different shape memory alloys, copper (Cu) based alloys were the most favourable alloys...
330a The aim of this work was to analyse the mechanisms of hindered internal passivation of silver b...
The objective of this research work was to develop new Fe-Mn-Si based shape memory alloys with prope...
This paper investigates the options and substitute of few Copper based shape memory alloys such as C...
Among different shape memory alloys, copper (Cu) based alloys were the most favourable alloys, becau...