Effect of preparation routes on the performance of a multi-component AB2-type hydrogen storage alloy

IF 7 3区 材料科学 Q1 ENERGY & FUELS
Moegamat Wafeeq Davids, Tayla Chirie Martin, Pavel V Fursikov, Mikhail V Zhidkov, Igor I Khodos, Simbarashe Fashu and Mykhaylo V Lototskyy
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引用次数: 0

Abstract

This article presents experimental results on the preparation and characterisation of a multi-component AB2–type intermetallic hydrogen storage alloy (A = Ti0.85Zr0.15, B = Mn1.22Ni0.22Cr0.2V0.3Fe0.06). The alloy samples were prepared by induction melting using Y2O3-lined alumo-silica and graphite crucibles. The characterisation results were compared with the ones for the reference sample of the same composition prepared by arc melting. It has been shown that the induction-melted samples exhibit reduced hydrogen sorption capacities and sloping plateaux on the pressure composition isotherms (PCI’s). The origin of the observed effects has been shown to be in the inhomogeneity of the induction-melted alloys and their contamination due to crucible—melt interaction, particularly pronounced for the alloy melted in the alumo-silica crucible; this alloy was additionally characterised by the decrease of Zr/Ti ratio and, in turn, higher plateau pressures of the PCI’s.
制备路线对多组分 AB2 型储氢合金性能的影响
本文介绍了一种多组分 AB2 型金属间储氢合金(A = Ti0.85Zr0.15,B = Mn1.22Ni0.22Cr0.2V0.3Fe0.06)的制备和表征实验结果。合金样品是使用内衬 Y2O3 的硅铝坩埚和石墨坩埚通过感应熔炼制备的。表征结果与电弧熔炼制备的相同成分参考样品的表征结果进行了比较。结果表明,感应熔化样品的氢吸附能力降低,压力成分等温线(PCI)上的高原倾斜。所观察到的影响源于感应熔化合金的不均匀性以及坩埚与熔液相互作用造成的污染,尤其是在铝硅坩埚中熔化的合金;这种合金的另一个特点是 Zr/Ti 比值降低,从而导致 PCI 的高原压力升高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
10.90
自引率
1.40%
发文量
58
期刊介绍: The Journal of Physics-Energy is an interdisciplinary and fully open-access publication dedicated to setting the agenda for the identification and dissemination of the most exciting and significant advancements in all realms of energy-related research. Committed to the principles of open science, JPhys Energy is designed to maximize the exchange of knowledge between both established and emerging communities, thereby fostering a collaborative and inclusive environment for the advancement of energy research.
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