Effect of Melt-Spinning Parameters on the Structure and Properties of Ni55.5Mn18.8Ga24Si1.7 Heusler Alloy Ribbons

Author:

Bhale Pranav1ORCID,Ari-Gur Pnina1,Noebe Ronald D.2,Ren Yang34,Madiligama Amila5ORCID,Devaraj Ranjith1,Cook Matthew S.6

Affiliation:

1. Department of Mechanical and Aerospace Engineering, Western Michigan University, Kalamazoo, MI 49008, USA

2. NASA Glenn Research Center, Cleveland, OH 44135, USA

3. Advanced Photon Source, Argonne National Laboratory, Lemont, IL 60439, USA

4. Department of Physics, City University of Hong Kong, Kowloon, Hong Kong, China

5. Department of Physics, University College Science, Pennsylvania State University, DuBois, PA 15801, USA

6. Los Alamos National Laboratory, Los Alamos, NM 87545, USA

Abstract

Ni–Mn-based Heusler alloys are known to demonstrate magnetic shape memory and giant magnetocaloric effect (MCE). These effects depend on the phases, crystallographic and magnetic phase transitions, and the crystallographic texture characteristics. These structural characteristics, in turn, are a function of the processing parameters. In the current work, Ni55.5Mn18.8Ga24Si1.7 Heusler alloy was processed by melt-spinning under a helium atmosphere. This process results in a fine microstructure. The ribbon that was produced with a narrower nozzle width, faster wheel speed, and higher cast temperature, indicating a faster cooling rate, had double the magnetic entropy change close to room temperature. However, the other ribbon demonstrated a large entropy change over a broader temperature range, extending its usability. The effect of the melt-spinning process parameters on the developing microstructure, crystallographic structure and texture, transformation temperatures, and the magnetic entropy change were studied to explain the difference in magnetocaloric behavior.

Funder

US National Science Foundation MRI

US Department of Energy, Office of Science

Publisher

MDPI AG

Subject

General Materials Science

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