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Thermodynamic calculation and experimental validation of Hf-rich glass forming compositions in Hf-Cu-Ni system

机译:HF-Cu-Ni系统中HF富含HF玻璃形成组合物的热力学计算与实验验证

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摘要

In the present work, Hafnium (Hf) based metallic glasses (MGs) have been developed with copper (Cu) and nickel (Ni) as the constituent elements. Glass forming compositions in Hf-Cu-Ni ternary system have been predicted using widely accepted thermodynamic parameters. The resulting compositions were subsequently validated by synthesizing the ribbons by melt-spun technique. Structural transformations of these ribbons were studied using X-ray diffraction (XRD) and differential scanning calorimeter (DSC). Existence of amorphous phase in the as-cast ribbons validates the applicability of thermodynamic approach. Further, it was observed that width of the supercooled liquid region (Delta T-x) for Hf-Cu-Ni system varies from 28 K to 69 K. In view of glass forming ability, the applicability of gamma* parameter is discussed for Hf-Cu-Ni system.
机译:在本作工作中,已经用铜(Cu)和镍(Ni)开发了基于铪(HF)的金属玻璃(MGS)作为构成元素。 使用广泛接受的热力学参数预测了HF-Cu-Ni三元体系中的玻璃形成组合物。 随后通过通过熔融技术合成带,通过合成带的组合物来验证所得组合物。 使用X射线衍射(XRD)和差示扫描量热计(DSC)研究这些带的结构变换。 在铸造带中的非晶相存在验证了热力学方法的适用性。 此外,观察到HF-Cu-Ni系统的过冷液位(Delta Tx)的宽度从28k到69k变化。考虑到玻璃形成能力,叙述γ*参数的适用性用于HF-Cu -ni系统。

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