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The influence of Ge and In addition on the phase formation of CoCrCuFeNi high-entropy alloy thin films

机译:Ge和In对CoCrCuFeNi高熵合金薄膜相形成的影响

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The influence of two solute elements (Ge and In) on the phase formation of CoCrCuFeNi thin films was studied. In both cases, a crystalline-to-amorphous phase transition is observed if the solute fraction is higher than a certain threshold. In the In-x-CoCrCuFeNi system, the phase transition could be understood from the lattice distortion, or stated differently from the atomic radius difference between In and the base elements. In the Ge-x-CoCrCuFeNi system, the phase transition is not topologically driven as the atomic radius of Ge is similar to the base elements. The amorphization threshold can, however, be predicted by the thermodynamic model of Miedema. This study demonstrates that the senary alloys could be regarded as binary alloys of the form X-x-TM1 (-) (x) (X = Ge or In, and TM = transition metals) and their phase formation can be explained by topological and/or thermodynamic considerations. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了两种溶质元素(Ge和In)对CoCrCuFeNi薄膜相形成的影响。在这两种情况下,如果溶质分数高于某个阈值,都会观察到晶体到非晶态的相变。在In-x-CoCrCuFeNi系统中,可以从晶格畸变中了解相变,或者可以从In与基础元素之间的原子半径差中不同地表述。在Ge-x-CoCrCuFeNi系统中,由于Ge的原子半径与基础元素相似,因此拓扑结构不驱动相变。但是,非晶化阈值可以通过Miedema的热力学模型预测。这项研究表明,含铅合金可以视为Xx-TM1(-)(x)形式的二元合金(X = Ge或In,TM =过渡金属),并且它们的相形成可以通过拓扑和/或热力学考虑。 (C)2016 Elsevier B.V.保留所有权利。

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