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Analysis of the effect of gallium content on the magnetomechanical behavior of single-crystal FeGa alloys using an energy-based model

机译:基于能量模型分析镓含量对单晶FeGa合金磁机械性能的影响

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The magnetomechanical behavior of single-crystal iron-gallium alloys with varying gallium content was found to be strongly dependent on the Ga content (Atulasimha 2006 PhD Thesis). An energy-based model ( Atulasimha 2006 PhD Thesis, Armstrong and William 1997 J. Appl. Phys. 81 2321) is employed to simulate the strikingly different actuation behavior (lambda-H and B-H curves under different compressive stresses) and validated against experimental data for 19, 24.7 and 29 at.% Ga, [ 100] oriented, slow-cooled single-crystal FeGa alloys. The effect of gallium content on the model parameters, specifically the cubic magnetocrystalline anisotropy constants and the Armstrong-smoothing factor Omega, their physical significance and ultimately their effect on the magnetomechanical behavior are analyzed and explained.
机译:发现镓含量不同的单晶铁镓合金的磁机械性能强烈依赖于Ga含量(Atulasimha 2006博士学位论文)。基于能量的模型(Atulasimha 2006博士学位论文,Armstrong和William 1997 J. Appl。Phys。81 2321)用于模拟非常不同的驱动行为(在不同压缩应力下的Lambda-H和BH曲线)并针对实验数据进行了验证适用于19、24.7和29 at。%Ga,[100]取向的慢冷单晶FeGa合金。分析和说明了镓含量对模型参数的影响,特别是立方磁晶各向异性常数和阿姆斯特朗平滑因子Omega的影响,其物理意义以及最终对磁机械性能的影响。

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