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Ni-Co-Mn-In films: elaboration and study of the magnetostructural transfer

AUTHOR Crougneau, Guillaume
PUBLISHER Our Knowledge Publishing (09/02/2021)
PRODUCT TYPE Paperback (Paperback)

Description
Heusler alloys have interesting mechanical, magnetic and thermal properties that result from the martensite-austenite structural transition. The coupling of these properties leads to applications in the field of actuators, sensors or coolers. We have developed a Ni-Co-Mn-In type film using a co-sputtering process. The objective is to obtain a film with a structural and magnetic transition at room temperature. After the study of the structure and the microstructure of the martensite and austenite phases, the magnetic properties were investigated. The change of magnetic state obtained for some films during the first order transition has led to interesting magnetocaloric and actuation properties. The best results are obtained for a film of composition Ni45.2Co4.7Mn36.2In13.9. The resistivity measurements under intense magnetic field is an innovative subject on films of this type and leads to a study of the irreversibility and the blocking of the structural transformation induced by the magnetic field (kinetic arrest).
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Product Details
ISBN-13: 9786203606362
ISBN-10: 6203606367
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
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Page Count: 176
Carton Quantity: 40
Product Dimensions: 6.00 x 0.41 x 9.00 inches
Weight: 0.59 pound(s)
Country of Origin: US
Subject Information
BISAC Categories
Science | Physics - General
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Heusler alloys have interesting mechanical, magnetic and thermal properties that result from the martensite-austenite structural transition. The coupling of these properties leads to applications in the field of actuators, sensors or coolers. We have developed a Ni-Co-Mn-In type film using a co-sputtering process. The objective is to obtain a film with a structural and magnetic transition at room temperature. After the study of the structure and the microstructure of the martensite and austenite phases, the magnetic properties were investigated. The change of magnetic state obtained for some films during the first order transition has led to interesting magnetocaloric and actuation properties. The best results are obtained for a film of composition Ni45.2Co4.7Mn36.2In13.9. The resistivity measurements under intense magnetic field is an innovative subject on films of this type and leads to a study of the irreversibility and the blocking of the structural transformation induced by the magnetic field (kinetic arrest).
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