Thermal and structural austenite to martensite reversible transition was studied in melt spun ribbons of Ni50Mn40Sn5Co5, Ni50Mn37.5Sn7.5Co5 and Ni50Mn35Sn10Co5 (at. %) alloys. Analysis of X-ray diffraction patterns confirms that all alloys have martensitic structure at room temperature: four layered orthorhombic 4O for Ni50Mn40Sn5Co5, four layered orthorhombic 4O and seven-layered monoclinic 14M for Ni50Mn37.5Sn7.5Co5 and seven-layered monoclinic 14M for Ni50Mn35Sn5Co5. Analysis of differential scanning calorimetry scans shows that higher enthalpy and entropy changes are obtained for alloy Ni50Mn37.5Sn7.5Co5, whereas transition temperatures increases as increasing valence electron densityThis research was supported by the projects MAT2013-4...
A series of Co doped Mn50Ni40-xCoxSn10 (x = 0, 1, 2, 2.5, 3, 4 and 6) Heusler alloys has been invest...
278 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1983.The transformation behavior o...
The martensitic transformation and the solidification structures of Mn49.3Ni43.7Sn7.0 alloy ribbons ...
Thermal and structural austenite to martensite reversible transition was studied in melt spun ribbon...
Three magnetic shape memory alloys: Mn50Ni50-x Sn x (x = 5, 7.5, and 10) were produced as bulk polyc...
Ferromagnetic shape memory alloys are characterized by both the structural austenite to martensite t...
Structural and magnetic transformations in the Heusler-based system Ni0.50Mn0.50¿xSnx are studied by...
The present study reports on the analysis of the microstructure, martensitic transformation, and the...
The effect of In and Co additions on the structure and thermal properties of melt-spun process Ni–Mn...
In present contribution we discuss the structural properties of the austenite and martensite phases ...
We report the microstructural and magnetic properties of Ni50Mn39Sn11 and Ni50Mn36Sn14 ribbon Heusle...
The Heusler alloy Ni50 Mn37 Sn13 was successfully produced as ribbon flakes of thickness around 7-10...
Martensitic transition and magnetic response of Ni50−x Pdx,y Mn36 Sn14−y (x = 0, 1, 2 and y = 0, 1) ...
Ni–Mn based Heusler alloys are of considerable interest due to their multifunctional properties such...
Heusler alloy Mn50Ni40In10 was produced as preferentially textured ribbon flakes by melt spinning, f...
A series of Co doped Mn50Ni40-xCoxSn10 (x = 0, 1, 2, 2.5, 3, 4 and 6) Heusler alloys has been invest...
278 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1983.The transformation behavior o...
The martensitic transformation and the solidification structures of Mn49.3Ni43.7Sn7.0 alloy ribbons ...
Thermal and structural austenite to martensite reversible transition was studied in melt spun ribbon...
Three magnetic shape memory alloys: Mn50Ni50-x Sn x (x = 5, 7.5, and 10) were produced as bulk polyc...
Ferromagnetic shape memory alloys are characterized by both the structural austenite to martensite t...
Structural and magnetic transformations in the Heusler-based system Ni0.50Mn0.50¿xSnx are studied by...
The present study reports on the analysis of the microstructure, martensitic transformation, and the...
The effect of In and Co additions on the structure and thermal properties of melt-spun process Ni–Mn...
In present contribution we discuss the structural properties of the austenite and martensite phases ...
We report the microstructural and magnetic properties of Ni50Mn39Sn11 and Ni50Mn36Sn14 ribbon Heusle...
The Heusler alloy Ni50 Mn37 Sn13 was successfully produced as ribbon flakes of thickness around 7-10...
Martensitic transition and magnetic response of Ni50−x Pdx,y Mn36 Sn14−y (x = 0, 1, 2 and y = 0, 1) ...
Ni–Mn based Heusler alloys are of considerable interest due to their multifunctional properties such...
Heusler alloy Mn50Ni40In10 was produced as preferentially textured ribbon flakes by melt spinning, f...
A series of Co doped Mn50Ni40-xCoxSn10 (x = 0, 1, 2, 2.5, 3, 4 and 6) Heusler alloys has been invest...
278 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1983.The transformation behavior o...
The martensitic transformation and the solidification structures of Mn49.3Ni43.7Sn7.0 alloy ribbons ...