Magnetocaloric effect in melt-spun nickel based Heusler alloys

Dwindling energy resources and unsustainable energy consumption are increasingly being seen as major global problems. Hence, energy efficient cooling technology has become an important research topic. Magnetic refrigeration, based on the magnetocaloric effect (MCE), has significant advantages compar...

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Main Author: Chen, Xi.
Other Authors: Raju Vijayaraghavan Ramanujan
Format: Theses and Dissertations
Language:English
Published: 2011
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Online Access:http://hdl.handle.net/10356/46312
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-463122023-03-04T16:37:35Z Magnetocaloric effect in melt-spun nickel based Heusler alloys Chen, Xi. Raju Vijayaraghavan Ramanujan School of Materials Science & Engineering DRNTU::Engineering::Materials::Magnetic materials Dwindling energy resources and unsustainable energy consumption are increasingly being seen as major global problems. Hence, energy efficient cooling technology has become an important research topic. Magnetic refrigeration, based on the magnetocaloric effect (MCE), has significant advantages compared to conventional gas compression cooling techniques, e.g., no green house gases as well as high energy efficiency. Because of these significant advantages, magnetic refrigeration has attracted considerable attention as an alternative to conventional refrigeration. Gadolinium, which is usually chosen as the magnetocaloric material (MCM), is very expensive, hence we focused on developing a cheaper MCM, i.e, Ni-Mn-Sn base alloys with attractive magnetic properties. The martensitic transition and the magnetic entropy change of Ni50Mn50-xSnx (x=6, 9, 11, 13, 15, 17, 20), Ni50-yCoyMn37Sn13 (y=0.5, 1.5, 1.7, 2.5, 5) and Ni50-zCozMn38Sn12 (z=1, 1.4, 2) Heusler alloys were studied. Synthesis by melt spinning, characterization and magnetic property measurements were carried out. The Ni-Co-Mn-Sn alloys studied in this work exhibited an entropy change (ΔS) of ~32 J.kg-1.K-1 at 50 kOe, which is much larger than the corresponding value for the “giant” magnetocaloric Ni50Mn37Sn13 alloys. Co additions result in a lowering of the martensitic transition temperature without significant loss in ΔS. Therefore, a wide range of service temperatures can be achieved, making these alloys attractive candidates for room temperature cooling applications. Master of Engineering (MSE) 2011-11-30T01:54:17Z 2011-11-30T01:54:17Z 2011 2011 Thesis http://hdl.handle.net/10356/46312 en 130 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Materials::Magnetic materials
spellingShingle DRNTU::Engineering::Materials::Magnetic materials
Chen, Xi.
Magnetocaloric effect in melt-spun nickel based Heusler alloys
description Dwindling energy resources and unsustainable energy consumption are increasingly being seen as major global problems. Hence, energy efficient cooling technology has become an important research topic. Magnetic refrigeration, based on the magnetocaloric effect (MCE), has significant advantages compared to conventional gas compression cooling techniques, e.g., no green house gases as well as high energy efficiency. Because of these significant advantages, magnetic refrigeration has attracted considerable attention as an alternative to conventional refrigeration. Gadolinium, which is usually chosen as the magnetocaloric material (MCM), is very expensive, hence we focused on developing a cheaper MCM, i.e, Ni-Mn-Sn base alloys with attractive magnetic properties. The martensitic transition and the magnetic entropy change of Ni50Mn50-xSnx (x=6, 9, 11, 13, 15, 17, 20), Ni50-yCoyMn37Sn13 (y=0.5, 1.5, 1.7, 2.5, 5) and Ni50-zCozMn38Sn12 (z=1, 1.4, 2) Heusler alloys were studied. Synthesis by melt spinning, characterization and magnetic property measurements were carried out. The Ni-Co-Mn-Sn alloys studied in this work exhibited an entropy change (ΔS) of ~32 J.kg-1.K-1 at 50 kOe, which is much larger than the corresponding value for the “giant” magnetocaloric Ni50Mn37Sn13 alloys. Co additions result in a lowering of the martensitic transition temperature without significant loss in ΔS. Therefore, a wide range of service temperatures can be achieved, making these alloys attractive candidates for room temperature cooling applications.
author2 Raju Vijayaraghavan Ramanujan
author_facet Raju Vijayaraghavan Ramanujan
Chen, Xi.
format Theses and Dissertations
author Chen, Xi.
author_sort Chen, Xi.
title Magnetocaloric effect in melt-spun nickel based Heusler alloys
title_short Magnetocaloric effect in melt-spun nickel based Heusler alloys
title_full Magnetocaloric effect in melt-spun nickel based Heusler alloys
title_fullStr Magnetocaloric effect in melt-spun nickel based Heusler alloys
title_full_unstemmed Magnetocaloric effect in melt-spun nickel based Heusler alloys
title_sort magnetocaloric effect in melt-spun nickel based heusler alloys
publishDate 2011
url http://hdl.handle.net/10356/46312
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