Basic Properties of Magnetic Shape-Memory Materials from First-Principles Calculations

被引:0
作者
Peter Entel
Antje Dannenberg
Mario Siewert
Heike C. Herper
Markus E. Gruner
Denis Comtesse
Hans-Joachim Elmers
Michael Kallmayer
机构
[1] University Duisburg-Essen,Faculty of Physics
[2] Johannes- Gutenberg University,Institute of Physics
来源
Metallurgical and Materials Transactions A | 2012年 / 43卷
关键词
Austenite; Martensite; Martensitic Transformation; Fermi Surface; Heusler Alloy;
D O I
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中图分类号
学科分类号
摘要
The mutual influence of phase transformations, magnetism, and electronic properties of magnetic-shape memory Heusler materials is a basic issue of electronic structure calculations based on density functional theory. In this article, we show that these calculations can be pursued to finite temperatures, which allows to derive on a first-principles basis the temperature versus composition phase diagram of the pseudo-binary Ni-Mn-(Ga, In, Sn, Sb) system. The free energy calculations show that the phonon contribution stabilizes the body-centered-cubic (bcc)-like austenite structure at elevated temperatures, whereas magnetism favors the low-temperature martensite phase with body-centered-tetragonal (bct) or rather face-centered-tetragonal (fct) structure. The calculations also allow to make predictions of magnetostructural and magnetic field induced properties of other (new) magnetic Heusler alloys not based on NiMn such as Co-Ni-(Ga-Zn) and Fe-Co-Ni-(Ga-Zn) intermetallic compounds.
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页码:2891 / 2900
页数:9
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