Cu-Al-Mn shape memory alloys with enhanced ductility have been developed by decreasing the degree of order in the β parent phase. Cu-Al-Mn alloys with Al contents lower than 18% exhibit good ductility with elongations of about 15% and excellent cold-workability arising from a lower degree of order in the Heusler (L21) β1 parent phase, without any loss in their shape memory behavior. In this paper the mechanical and shape memory characteristics, such as the cold-workability, the Ms temperatures, the shape memory effect and the pseudo-elasticity of such ductile Cu-Al-Mn alloys are presented
Shape memory alloys are typical temperature-sensitive metallic functional materials due to superelas...
The thermally and stress induced phase transitions occurring in a Cu-Al-Mn Shape Memory Alloy (SMA) ...
The present investigation aims to enhance the mechanical properties and shape memory characteristics...
Cu-Al-Mn shape memory alloys with enhanced ductility have been developed by decreasing the degree of...
Abstract Cu-Al-Mn shape memory alloys of a variety of composition were characterized in terms of sha...
The effect of grain refinement on the mechanical and shape memory (SM) properties of the β phase Cu-...
The effect of grain refinement on the mechanical and shape memory (SM) properties of the β phase Cu-...
Advantages of Cu based shape memory alloy include amongst other features, high transformation temper...
This thesis has reviewed the development and the current status in the research field of copper-base...
The Cu-Al-Ni is well known for its ability to work at elevated temperature as a shape memory alloy. ...
New type of Cu-Al-Nb - base alloys containing nickel, cobalt and chromium with high martensitic tran...
Among different shape memory alloys, copper (Cu) based alloys were the most favourable alloys, becau...
SummaryAmong different shape memory alloys, copper (Cu) based alloys were the most favourable alloys...
Stabilization of martensite and two way shape memory effect (TWSME) was studied in Cu-Al-Mn alloys c...
Shape memory alloys are typical temperature-sensitive metallic functional materials due to superelas...
Shape memory alloys are typical temperature-sensitive metallic functional materials due to superelas...
The thermally and stress induced phase transitions occurring in a Cu-Al-Mn Shape Memory Alloy (SMA) ...
The present investigation aims to enhance the mechanical properties and shape memory characteristics...
Cu-Al-Mn shape memory alloys with enhanced ductility have been developed by decreasing the degree of...
Abstract Cu-Al-Mn shape memory alloys of a variety of composition were characterized in terms of sha...
The effect of grain refinement on the mechanical and shape memory (SM) properties of the β phase Cu-...
The effect of grain refinement on the mechanical and shape memory (SM) properties of the β phase Cu-...
Advantages of Cu based shape memory alloy include amongst other features, high transformation temper...
This thesis has reviewed the development and the current status in the research field of copper-base...
The Cu-Al-Ni is well known for its ability to work at elevated temperature as a shape memory alloy. ...
New type of Cu-Al-Nb - base alloys containing nickel, cobalt and chromium with high martensitic tran...
Among different shape memory alloys, copper (Cu) based alloys were the most favourable alloys, becau...
SummaryAmong different shape memory alloys, copper (Cu) based alloys were the most favourable alloys...
Stabilization of martensite and two way shape memory effect (TWSME) was studied in Cu-Al-Mn alloys c...
Shape memory alloys are typical temperature-sensitive metallic functional materials due to superelas...
Shape memory alloys are typical temperature-sensitive metallic functional materials due to superelas...
The thermally and stress induced phase transitions occurring in a Cu-Al-Mn Shape Memory Alloy (SMA) ...
The present investigation aims to enhance the mechanical properties and shape memory characteristics...