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Calculation of the switching field for magnetic shape memory alloys using finite element analysis

Julkaisuvuosi

2023

Tekijät

Nemov Aleksandr; Saren Andrey; Matikainen Marko; Ullakko Kari; Mikkola Aki

Tiivistelmä

Magnetic shape memory (MSM) alloys are among the most promising smart materials, capable of revolutionizing several multidisciplinary areas, such as soft robotics, digital hydraulics, and multiple biomedical applications. The characteristic aspect of the MSM effect is structure reorientation in a martensite of MSM alloy, associated with the movement of the twin boundary (TB), the interface between differently oriented martensite variants. Even though the MSM effect has been under investigation since its discovery in 1996, there is still plenty of controversy in theoretical predictions based on different assumptions. In our research, we investigated one of the fundamental aspects of the MSM effect – conditions for setting a (TB) in motion. The effect was analyzed for a two-variant specimen of five-layered modulated martensite of Ni-Mn-Ga with a single TB. Three-dimensional finite element analysis of magnetic field was employed, and energy-based criteria for setting the TB in motion was applied, using the results of magnetic field calculation. Results of the simulation study were compared with experimentally determined magnitude of the magnetic field required for initiating the TB movement in the considered specimen, and applicability of the used assumptions was assessed. Findings of the study clarify the role of three-dimensional non-homogeneous distribution of magnetic field across the TB, which is usually not accounted for in theoretical models of the MSM effect. Ways of further development of the approach for the simulation-based prediction of the switching field are proposed.
Näytä enemmän

Organisaatiot ja tekijät

Lappeenrannan–Lahden teknillinen yliopisto LUT

Mikkola Aki

Nemov Aleksandr

Matikainen Marko

Saren Andrey

Ullakko Kari

Julkaisutyyppi

Julkaisumuoto

Artikkeli

Emojulkaisun tyyppi

Konferenssi

Artikkelin tyyppi

Muu artikkeli

Yleisö

Tieteellinen

Vertaisarvioitu

Vertaisarvioitu

OKM:n julkaisutyyppiluokitus

A4 Artikkeli konferenssijulkaisussa

Julkaisukanavan tiedot

Konferenssi

10th ECCOMAS Thematic Conference on Smart Structures and Materials (SMART 2023)

Kustantaja

Dept. of Mechanical Engineering & Aeronautics University of Patras

Avoin saatavuus

Avoin saatavuus kustantajan palvelussa

Kyllä

Julkaisukanavan avoin saatavuus

Kokonaan avoin julkaisukanava

Rinnakkaistallennettu

Ei

Muut tiedot

Tieteenalat

Fysiikka; Kone- ja valmistustekniikka

Avainsanat

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Kustantajan kansainvälisyys

Kansainvälinen

Kansainvälinen yhteisjulkaisu

Ei

Yhteisjulkaisu yrityksen kanssa

Ei

DOI

10.7712/150123.9760.445291

Julkaisu kuuluu opetus- ja kulttuuriministeriön tiedonkeruuseen

Kyllä