Large Adiabatic Temperature Change in Magnetoelastic Transition in Ni50Mn35Cr2Sn13 Heusler Alloy of Granular Nanostructure

Prakash, H. R. and Sharma, S. K. and Ram, S. and Chatterjee, S. (2021) Large Adiabatic Temperature Change in Magnetoelastic Transition in Ni50Mn35Cr2Sn13 Heusler Alloy of Granular Nanostructure. In: Advanced Aspects of Engineering Research Vol. 9. B P International, pp. 131-138. ISBN 978-93-90888-79-5

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Abstract

A ternary Ni-Mn-Sn Heusler alloy – eco-friendly energy material presents a granular nanostructure, a pioneering series of magnetocaloric materials of a huge heat-energy exchanger in a synergic magnetoelastic transition. A small additive of nearly 2 at% Cr effectively tunes a valence electron density of 8.090 electrons per atom and a duly large change in the entropy SM A = 4.428 J/kg-K ( SM A = 3.695 J/kg-K in the recycle) at the martensite austenite phase transition, which is useful for the magnetic refrigeration and other cooling devices. The Cr additive - a grain refiner promptly tempers the tetragonality with an aspect ratio c/a = 0.903 of the low temperature martensite phase, so as it exhibits a promptly tailored adiabatic temperature change of 10 K. At room temperature, the sample exhibits a narrow ferromagnetic hysteresis loop, with 48.9 emu/g saturation magnetization and 82.1 Oe coercivity, useful for domestic usages.

Item Type: Book Section
Subjects: Eprint Open STM Press > Engineering
Depositing User: Unnamed user with email admin@eprint.openstmpress.com
Date Deposited: 31 Oct 2023 06:54
Last Modified: 31 Oct 2023 06:54
URI: http://library.go4manusub.com/id/eprint/1475

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