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
Full text not available from this repository.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 |
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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 |