Magnetocaloric effect in “reduced” dimensions: Thin films, ribbons, and microwires of Heusler alloys and related compounds
Room temperature magnetic refrigeration is an energy saving and environmentally‐friendly
technology, which has developed rapidly from a basic idea to prototype devices. The …
technology, which has developed rapidly from a basic idea to prototype devices. The …
Influence of Fe do** and magnetic field on martensitic transition in Ni–Mn–Sn melt-spun ribbons
Abstract Mn-rich Ni–Mn–Sn metamagnetic shape memory alloys exhibiting
magnetostructural transformation are of a great potential as the base materials for solid-state …
magnetostructural transformation are of a great potential as the base materials for solid-state …
Distribution of transition temperatures in magnetic transformations: Sources, effects and procedures to extract information from experimental data
The presence of a distribution of transition temperatures (DTT) is ubiquitous in materials
science. It is common to ascribe deviations from theoretical pure-phase behavior to this fact …
science. It is common to ascribe deviations from theoretical pure-phase behavior to this fact …
The impact of disorder on the 4O-martensite of Ni–Mn–Sn Heusler alloy
We have performed a quantum-mechanical study of thermodynamic, elastic, magnetic and
structural properties of four different ferrimagnetic states in Ni 1.9375 Mn 1.5625 Sn 0.5 …
structural properties of four different ferrimagnetic states in Ni 1.9375 Mn 1.5625 Sn 0.5 …
Surface topography, microstructure and magnetic domains in Al for Sn substituted metamagnetic Ni–Mn–Sn Heusler alloy ribbons
P Czaja, W Maziarz, J Przewoźnik, A Żywczak, P Ozga… - Intermetallics, 2014 - Elsevier
Abstract Heusler alloy Ni 48 Mn 39.5 Sn 12.5− x Al x (x= 0, 1, 2, 3) ribbons were prepared by
melt spinning. The cross section of ribbons reveals a typical heterogeneous microstructure …
melt spinning. The cross section of ribbons reveals a typical heterogeneous microstructure …
Unconventionally Large Exchange Bias and Cluster Spin Glass State in Mn2(Ni,Sn) Heusler Alloys Melt Spun Ribbons
J Sharma, S Gopinatha Warrier… - ACS Applied …, 2024 - ACS Publications
Here, we report the structural, microstructural, magnetic, and exchange bias (EB) properties
of polycrystalline ribbons of Mn50Ni42. 5–x Sn7. 5+ x (x= 0 and 1) Heusler alloys. They …
of polycrystalline ribbons of Mn50Ni42. 5–x Sn7. 5+ x (x= 0 and 1) Heusler alloys. They …
Magneto-structural transformations in Ni50Mn37. 5Sn12. 5− xInx Heusler powders
W Maziarz, A Wójcik, P Czaja, A Żywczak… - Journal of Magnetism …, 2016 - Elsevier
The effect of ball milling and subsequently annealing of melt spun ribbons on magneto-
structural transformations in Ni 50 Mn 37.5 Sn 12.5− x In x (x= 0, 2, 4, 6) ribbons is …
structural transformations in Ni 50 Mn 37.5 Sn 12.5− x In x (x= 0, 2, 4, 6) ribbons is …
Influence of annealing temperatures on the magnetostructural transition and magnetocaloric effect of Ni40Co10Mn40Sn10 powders
X Wang, F Sun, J Wang, Q Yu, Y Wu, H Hua… - Journal of Alloys and …, 2017 - Elsevier
The phase structure, the magnetostructural transition behavior and the associated
magnetocaloric effect have been investigated in Ni 40 Co 10 Mn 40 Sn 10 bulk and …
magnetocaloric effect have been investigated in Ni 40 Co 10 Mn 40 Sn 10 bulk and …
Realization of magnetic-field-induced martensitic transformation in melt-spun Fe-Mn-Ga alloys
This study investigates the crystal structural, magnetic properties, and phase transformation
of melt-spun Fe-Mn-Ga alloys. We found that melt-spun Fe 50 Mn 25 Ga 25 alloy crystallizes …
of melt-spun Fe-Mn-Ga alloys. We found that melt-spun Fe 50 Mn 25 Ga 25 alloy crystallizes …
Effect of ball milling and thermal treatment on exchange bias and magnetocaloric properties of Ni48Mn39. 5Sn10. 5Al2 ribbons
The combined effect of ball milling and subsequent heat treatment on microstructure,
magnetic, magnetocaloric and exchange bias properties of Ni 48 Mn 39.5 Sn 10.5 Al 2 …
magnetic, magnetocaloric and exchange bias properties of Ni 48 Mn 39.5 Sn 10.5 Al 2 …