Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7988229 | Intermetallics | 2018 | 10 Pages |
Abstract
In the present work, polycrystalline Ni50Mn36Sn14-xInx (xâ¯=â¯0, 1, 2 and 3) Heusler alloys were prepared. The influence of In substitution for Sn on the crystal structure, martensitic transition (MT) and magnetic properties have been investigated for these alloys. Structural analysis indicate that the samples possess L21 structure at room temperature. With increasing In content, the martensitic transition shifts to a higher temperature, while the Curie temperature of austenite phase moves to a lower temperature. The maximum entropy change (ÎSM)max near the martensitic transition is found to be 8.4â¯J/kgK, 9.8â¯J/kgK, 10.1â¯J/kgK and 19.2â¯J/kgK for xâ¯=â¯0, 1, 2 and 3 respectively, for a field change of 50â¯kOe. The entropy change around the Curie temperature of the austenite phase is found to be - 2.9â¯J/kgK, â1.8â¯J/kgK, â4.1â¯J/kgK and â3.9â¯J/kgK respectively for xâ¯=â¯0, 1, 2 and 3 alloys, for a field change of 50â¯kOe. The effective RCP values are 80â¯J/kg, 15.6â¯J/kg, 65.8â¯J/kg and 69.4â¯J/kg for xâ¯=â¯0, 1, 2 and 3 alloys respectively, near the first order transition region. The RCP values are higher around the second order transition region due to the broad nature of ÎSM curves. The corresponding values are 114â¯J/kg, 92â¯J/kg, 121â¯J/kg and 132â¯J/kg for xâ¯=â¯0, 1, 2 and 3 alloys, respectively. Moreover, the critical behavior of Ni50Mn36Sn14-xInx (xâ¯=â¯1, 2 and 3) Heusler alloys around the ferromagnetic-paramagnetic transition region of austenite phase is studied from the field dependence of magnetic entropy change. The critical exponent values are close to the theoretical prediction of mean field model with a slight deviation.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
G.R. Raji, Bhagya Uthaman, Rojerce Brown Job, Senoy Thomas, K.G. Suresh, Manoj Raama Varma,