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Structural and Magnetic Transitions in Fe-, Co-, and Al-Substituted Ni-Mn-Ga Ferromagnetic Shape Memory Alloys

机译:Fe,Co和Al取代的Ni-Mn-Ga铁磁形状记忆合金的结构和磁转变

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摘要

Quaternary alloys based on Ni50Mn30Ga20 (an off-stoichiometric Heusler alloy, Ni2MnGa), with an intended substitution of 10 at. pct Ni by Fe or Co and with a 5 at. pct substitution of Ga by Al, were prepared by vacuum arc melting and heat treated. The as-cast and heat-treated alloys were characterized for their structural, thermal, and magnetic properties. The saturation magnetization improved with the addition of ferromagnetic elements Fe or Co and decreased with the Al addition. All three of the substitutions lowered the martensite transformation temperature, due to a reduction in the electron-to-atom (e/a) ratio for the Fe/Co additions or due to the more open structure resulting from the lower atomic size, in the case of the Al substitutions. Martensite transformation studied through thermal and thermomagnetic analysis methods shows a single-stage transformation in the case of the Fe/Co substitutions, whereas the Al substitution resulted in a two-stage transformation.
机译:基于Ni50 Mn30 Ga20 (一种非化学计量的Heusler合金,Ni2 MnGa)的四元合金,其预期替代量为10 at。由Fe或Co制成的pct Ni,原子含量为5 at。通过真空电弧熔化和热处理制备Ga被Alpt取代的Ga。铸态和热处理合金的特征在于其结构,热和磁性能。饱和磁化强度随着铁磁性元素Fe或Co的添加而提高,而随着Al的添加而降低。由于Fe / Co添加的电子原子比(e / a)降低,或者由于较低的原子尺寸导致结构更开放,这三个取代均降低了马氏体转变温度。 Al替代的情况。通过热和热磁分析方法研究的马氏体相变在Fe / Co取代的情况下显示了一个单阶段的转变,而Al取代导致了一个两阶段的转变。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2007年第9期|2076-2084|共9页
  • 作者单位

    Defence Metallurgical Research Laboratory Hyderabad 500 058 India;

    Defence Metallurgical Research Laboratory Hyderabad 500 058 India;

    Defence Metallurgical Research Laboratory Hyderabad 500 058 India;

    Department of Metallurgical and Materials Engineering Indian Institute of Technology Roorkee 247 667 India;

    Defence Metallurgical Research Laboratory Hyderabad 500 058 India;

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