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Impact of Sulfur Addition on the Structure and Dynamics of Ni–Nb Alloy Melts

APL materials(2024)SCI 3区

Deutsch Zentrum Luft & Raumfahrt DLR | Univ Munster | Saarland Univ | Deutsch Elektronen Synchrotron DESY | Paul Scherrer Inst

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Abstract
We investigated the change in the structure and dynamics of a Ni–Nb bulk metallic glass upon sulfur addition on both microscopic and macroscopic scales. With the sulfur concentration of 3 at. %, where the composition Ni58Nb39S3 exhibits the best glass forming ability in the investigated sulfur concentration range, both the equilibrium and undercooled melt dynamics remain almost unchanged. Only in the glassy state does sulfur seem to result in mass transport less decoupled to the viscosity of the undercooled liquid, where the measured Ag tracer diffusion coefficient is slower in the ternary alloy. With the structural disorder introduced by the alloying sulfur, the improved glass forming ability is attributed to geometrical frustration, where crystal nucleation requires a depletion of sulfur and hence long range diffusion, as long as no primary sulfur-containing crystalline phase is involved.
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要点】:该论文研究了硫添加对Ni–Nb合金熔体结构和动态的影响,发现硫添加在一定浓度下(3 at.%)能提高合金的玻璃形成能力,其机理与硫引起的几何摩擦和硫的远距扩散相关。

方法】:通过在微观和宏观尺度上研究硫添加对Ni–Nb块状金属玻璃结构与动态的影响。

实验】:在硫浓度为3 at.%时,Ni58Nb39S3合金表现出最佳的玻璃形成能力。在此浓度范围内,合金的平衡和过冷熔体动力学几乎不变;只有在玻璃态时,硫导致质量传输与过冷液体的粘度的解耦,表现为Ag追踪扩散系数在三元合金中减慢。硫引起的结构无序通过几何摩擦提高了玻璃形成能力,其中晶核形成需要硫的耗尽和长距离扩散,只要不涉及硫含量的初级晶体相。