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Exchange Coupling Nanophase Fe-Pd Ferromagnets Through Solid State Transformation

机译:通过固态变换交换耦合纳米级Fe-PD铁圆形仪

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This study continues previous work on off-stoichiometric Fe-Pd alloys using a combined reaction strategy during thermomechanical processing [1,2]. Severe plastic deformation of the initial disordered fcc gamma phase (γ) of compostion Fe-35at.%Pd, followed by heat treatment in the two phase field produces a nano-composite ferromagnet comprised of soft alpha phase/ferrite (α) in a high-anisotropy L1_0 FePd matrix. The length scale and morphology of the transformation products have been characterized using x-ray diffraction, and scanning electron microscopy. The transformed microstructures exhibit strong texture retention similar to the stoichiometric alloy suggesting a massive ordering mode. The alloy has shown a proclivity to exchange couple at a length scale not in agreement with proposed theories of exchange coupling [3,4]. The magnetic properties were measured using standard vibrating sample magnetometry (VSM). This research has been supported by the National Science Foundation (NSF-DMR).
机译:本研究继续在热机械加工过程中使用组合的反应策略在脱离化学计量的Fe-Pd合金上继续工作[1,2]。 Compostion Fe-35at的初始无序FCCγ(γ)的严重塑性变形。%Pd,在两个相场中的热处理,产生高于软α相/铁氧体(α)的纳米复合铁磁性(α) - isotropy l1_0 fepd矩阵。使用X射线衍射和扫描电子显微镜表征转化产物的长度和形态。转化的微观结构表现出强烈的质地保留,类似于构成大量排序模式的化学计量合金。该合金已经示出了在不与建议的交换耦合理论(3,4)的建议理论的长度规模交换耦合的倾向性。使用标准振动样品磁体(VSM)测量磁性。该研究得到了国家科学基金会(NSF-DMR)的支持。

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