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Effect of Co and Mn Doping on the Martensitic Transformations and Magnetic Properties of Fe-Pd Ferromagnetic Shape Memory Alloys

机译:Co和Mn掺杂对Fe-Pd铁磁形状记忆合金马氏体相变和磁性能的影响

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The effect of the partial substitution of Fe by Co and Mn on the structural and magnetic properties of Fe-Pd alloys has been investigated by means of calorimetric, magnetic and neutron diffraction measurements. The addition of Mn increases both the reversible and irreversible MT temperatures whereas the addition of Co causes the opposite effect, which points out that that the compositional dependence of the transformation temperatures of the Fe-Pd alloys is not related to the Pd amount but to the e/a concentration. Furthermore, it is shown that the appearance of the BCT phase is directly related to the tetragonality of the FCT phase. On the other hand, the amount of FCT martensite that irreversibly transforms into the undesirable BCT phase is considerably reduced by both the Co and Mn doping. The substitution of Fe by Co seems to be especially interesting for magnetic field-induce strains applications since both the magnetic anisotropy and the saturation magnetization of the Fe-Pd FCT martensite are considerably increased with the Co addition.
机译:通过量热法,磁法和中子衍射法研究了用钴和锰部分取代铁对铁钯合金的结构和磁性的影响。 Mn的添加会同时增加可逆和不可逆的MT温度,而Co的添加会产生相反的作用,这表明Fe-Pd合金的相变温度的成分依赖性与Pd量无关,而与Pd量有关。 e / a浓度。此外,表明BCT相的外观与FCT相的四方性直接相关。另一方面,通过Co和Mn掺杂,不可逆地转变成不希望的BCT相的FCT马氏体的量大大减少。用Co替代Fe似乎对磁场诱导应变应用特别有趣,因为添加Co会大大增加Fe-Pd FCT马氏体的磁各向异性和饱和磁化强度。

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