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Following the Martensitic Configuration Footprints in the Transition Route of Ni-Mn-Ga Magnetic Shape Memory Films: Insight into the Role of Twin Boundaries and Interfaces

Magnetic shape memory Heuslers have a great potential for their exploitation in next-generation cooling devices and actuating systems, due to their “giant” caloric and thermo/magnetomechanical effects arising from the combination of magnetic order and a martensitic transition. Thermal hysteresis, br...

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Autores principales: Takhsha Ghahfarokhi, Milad, Nasi, Lucia, Casoli, Francesca, Fabbrici, Simone, Trevisi, Giovanna, Cabassi, Riccardo, Albertini, Franca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7254361/
https://www.ncbi.nlm.nih.gov/pubmed/32370074
http://dx.doi.org/10.3390/ma13092103
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author Takhsha Ghahfarokhi, Milad
Nasi, Lucia
Casoli, Francesca
Fabbrici, Simone
Trevisi, Giovanna
Cabassi, Riccardo
Albertini, Franca
author_facet Takhsha Ghahfarokhi, Milad
Nasi, Lucia
Casoli, Francesca
Fabbrici, Simone
Trevisi, Giovanna
Cabassi, Riccardo
Albertini, Franca
author_sort Takhsha Ghahfarokhi, Milad
collection PubMed
description Magnetic shape memory Heuslers have a great potential for their exploitation in next-generation cooling devices and actuating systems, due to their “giant” caloric and thermo/magnetomechanical effects arising from the combination of magnetic order and a martensitic transition. Thermal hysteresis, broad transition range, and twinning stress are among the major obstacles preventing the full exploitation of these materials in applications. Using Ni-Mn-Ga seven-modulated epitaxial thin films as a model system, we investigated the possible links between the phase transition and the details of the twin variants configuration in the martensitic phase. We explored the crystallographic relations between the martensitic variants from the atomic-scale to the micro-scale through high-resolution techniques and combined this information with the direct observation of the evolution of martensitic twin variants vs. temperature. Based on our multiscale investigation, we propose a route for the martensitic phase transition, in which the interfaces between different colonies of twins play the major role of initiators for both the forward and reverse phase transition. Linking the martensitic transition to the martensitic configuration sheds light onto the possible mechanisms influencing the transition and paves the way towards microstructure engineering for the full exploitation of shape memory Heuslers in different applications.
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spelling pubmed-72543612020-06-10 Following the Martensitic Configuration Footprints in the Transition Route of Ni-Mn-Ga Magnetic Shape Memory Films: Insight into the Role of Twin Boundaries and Interfaces Takhsha Ghahfarokhi, Milad Nasi, Lucia Casoli, Francesca Fabbrici, Simone Trevisi, Giovanna Cabassi, Riccardo Albertini, Franca Materials (Basel) Article Magnetic shape memory Heuslers have a great potential for their exploitation in next-generation cooling devices and actuating systems, due to their “giant” caloric and thermo/magnetomechanical effects arising from the combination of magnetic order and a martensitic transition. Thermal hysteresis, broad transition range, and twinning stress are among the major obstacles preventing the full exploitation of these materials in applications. Using Ni-Mn-Ga seven-modulated epitaxial thin films as a model system, we investigated the possible links between the phase transition and the details of the twin variants configuration in the martensitic phase. We explored the crystallographic relations between the martensitic variants from the atomic-scale to the micro-scale through high-resolution techniques and combined this information with the direct observation of the evolution of martensitic twin variants vs. temperature. Based on our multiscale investigation, we propose a route for the martensitic phase transition, in which the interfaces between different colonies of twins play the major role of initiators for both the forward and reverse phase transition. Linking the martensitic transition to the martensitic configuration sheds light onto the possible mechanisms influencing the transition and paves the way towards microstructure engineering for the full exploitation of shape memory Heuslers in different applications. MDPI 2020-05-01 /pmc/articles/PMC7254361/ /pubmed/32370074 http://dx.doi.org/10.3390/ma13092103 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Takhsha Ghahfarokhi, Milad
Nasi, Lucia
Casoli, Francesca
Fabbrici, Simone
Trevisi, Giovanna
Cabassi, Riccardo
Albertini, Franca
Following the Martensitic Configuration Footprints in the Transition Route of Ni-Mn-Ga Magnetic Shape Memory Films: Insight into the Role of Twin Boundaries and Interfaces
title Following the Martensitic Configuration Footprints in the Transition Route of Ni-Mn-Ga Magnetic Shape Memory Films: Insight into the Role of Twin Boundaries and Interfaces
title_full Following the Martensitic Configuration Footprints in the Transition Route of Ni-Mn-Ga Magnetic Shape Memory Films: Insight into the Role of Twin Boundaries and Interfaces
title_fullStr Following the Martensitic Configuration Footprints in the Transition Route of Ni-Mn-Ga Magnetic Shape Memory Films: Insight into the Role of Twin Boundaries and Interfaces
title_full_unstemmed Following the Martensitic Configuration Footprints in the Transition Route of Ni-Mn-Ga Magnetic Shape Memory Films: Insight into the Role of Twin Boundaries and Interfaces
title_short Following the Martensitic Configuration Footprints in the Transition Route of Ni-Mn-Ga Magnetic Shape Memory Films: Insight into the Role of Twin Boundaries and Interfaces
title_sort following the martensitic configuration footprints in the transition route of ni-mn-ga magnetic shape memory films: insight into the role of twin boundaries and interfaces
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7254361/
https://www.ncbi.nlm.nih.gov/pubmed/32370074
http://dx.doi.org/10.3390/ma13092103
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