[PDF][PDF] Phase transition and magnetocaloric properties of Mn50Ni42− xCoxSn8 (0≤ x≤ 10) melt-spun ribbons

Z Li, Y Jiang, CF Sánchez Valdés… - IUCrJ, 2018 - journals.iucr.org
The characteristics of magnetostructural coupling play a crucial role in the magnetic field-
driven behaviour of magnetofunctional alloys. The availability of magnetostructural coupling …

The effect of heat treatments on Ni43Mn42Co4Sn11 meta-magnetic shape memory alloys for magnetic refrigeration

NM Bruno, C Yegin, I Karaman, JH Chen, JH Ross Jr… - Acta materialia, 2014 - Elsevier
The inverse magnetocaloric effect (MCE) in bulk polycrystalline and melt-spun ribbons of the
Ni 43 Mn 42 Co 4 Sn 11 meta-magnetic shape memory alloy (MSMA) is investigated. The …

Crystal structure determination of incommensurate modulated martensite in Ni–Mn–In Heusler alloys

H Yan, Y Zhang, N Xu, A Senyshyn, HG Brokmeier… - Acta materialia, 2015 - Elsevier
The crystal structure of modulated martensite in Mn-rich off-stoichiometric Ni 2 Mn 1.44 In
0.56 alloy was determined with high-resolution powder neutron diffraction and synchrotron X …

Crystallographic characterization on polycrystalline Ni-Mn-Ga alloys with strong preferred orientation

Z Li, B Yang, N Zou, Y Zhang, C Esling, W Gan, X Zhao… - Materials, 2017 - mdpi.com
Heusler type Ni-Mn-Ga ferromagnetic shape memory alloys can demonstrate excellent
magnetic shape memory effect in single crystals. However, such effect in polycrystalline …

Flexible Magnetocaloric Fiber Mats for Room-Temperature Energy Applications

V Bayzi Isfahani, I Coondoo, I Bdikin… - … Applied Materials & …, 2024 - ACS Publications
Currently, magnetocaloric refrigeration technologies are emerging as ecofriendly and more
energy-efficient alternatives to conventional expansion–compression systems. However …

Magnetocaloric effect in preferentially textured Mn50Ni40In10 melt spun ribbons

B Hernando, JL Sánchez Llamazares, VM Prida… - Applied Physics …, 2009 - pubs.aip.org
Inverse and direct magnetocaloric properties were evaluated in preferentially textured Mn 50
Ni 40 In 10 ribbons applying the magnetic field H∥ along the ribbon length and …

Grain oriented NiMnSn and NiMnIn Heusler alloys ribbons produced by melt spinning: Martensitic transformation and magnetic properties

B Hernando, JLS Llamazares, JD Santos… - Journal of Magnetism …, 2009 - Elsevier
We outline the microstructural, martensitic transformation and magnetic properties of
Heusler alloys with starting compositions Ni50Mn37Sn13, Ni50Mn36In14, and …

Effect of annealing on the martensitic transformation and magnetocaloric effect in Ni44. 1Mn44. 2Sn11. 7 ribbons

HC Xuan, KX Xie, DH Wang, ZD Han, CL Zhang… - Applied Physics …, 2008 - pubs.aip.org
The Ni 44.1 Mn 44.2 Sn 11.7 ribbons were prepared by melt spinning. A single-phase
austenite with L 2 1 structure was confirmed in the melt-spun ribbons at room temperature …

Influence of non-magnetic Cu on structural, magnetic and magnetocaloric properties on NiMnIn bulk Heusler alloys

P Sivaprakash, I Kim, S Divya, S Hajra, TH Oh… - Materials Science and …, 2023 - Elsevier
The structural, magnetic, and magnetocaloric characteristics of bulk Cu-doped Ni 47 Mn 40-
s Cu s In 13 Heusler alloys (s= 0 and 1) were investigated. Temperature-dependent …

Magnetic-field-induced metamagnetic reverse martensitic transformation and magnetocaloric effect in all-d-metal Ni36. 0Co14. 0Mn35. 7Ti14. 3 alloy ribbons

K Liu, X Han, K Yu, C Ma, Z Zhang, Y Song, S Ma… - Intermetallics, 2019 - Elsevier
The microstructure, crystalline structure, martensitic transformation, and magnetocaloric
effect are systematically studied in all-d-metal Ni 36.0 Co 14.0 Mn 35.7 Ti 14.3 alloy ribbons …