首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of Ce substitution on hydrogen absorption/desorption of Laves phase-related BCC solid solution Ti33V37Mn30 alloy
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Effect of Ce substitution on hydrogen absorption/desorption of Laves phase-related BCC solid solution Ti33V37Mn30 alloy

机译:Ce取代对熔融剂相相关BCC固溶体Ti33V37MN30合金氢吸收/解吸的影响

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摘要

In order to understand the effects of rare element substitution on activation performance of Laves phase-related BCC solid solution alloys, cerium (Ce) is used to partial substitute for Mn in Ti33V37Mn30 alloy. Results show that Ce substitution leads to the formation of Ce/CeO2 while decreases C14 Laves phase. Ce substituting alloys can absorb hydrogen without being activated at a high temperature, which means the activation performance of Ti33V37Mn30 alloys is improved greatly by the Ce/CeO2 rather than C14 Laves phase. The maximum hydrogen absorption capacity also increases when Ce content increases. The hydrogen absorption capacity and effective hydrogen storage capacity reach the maximum when the composition is Ti33V37Mn29.4Ce0.6, with the values of 3.35 wt% at 293 K and 2.25 wt% at 423 K. The dehydriding enthalpy (Delta H) of 0.6 at.%-Ce-substituting alloy is higher than that of Ce-free alloy, which indicates that Ce substitution can increase the stability of hydrides. (C) 2018 Elsevier B.V. All rights reserved.
机译:为了了解稀有元素取代对熔融相相关的BCC固体溶液合金的活化性能的影响,铈(CE)用于部分替代Ti33V37Mn30合金的Mn。结果表明,CE替代导致CE / CEO2的形成,同时降低C14 Laves阶段。 Ce替代合金可以在不在高温下活化的情况下吸收氢,这意味着Ti33V37Mn30合金的活化性能通过CE / CEO2而不是C14 Laves阶段改善。当CE含量增加时,最大氢吸收能力也会增加。当组合物为TI33V37MN29.4CE0.6时,氢吸收能力和有效的储氢能力达到最大值,在423k的293k和2.25wt%时的值为3.35wt%。脱水焓(delta h)为0.6 。% - CE替代合金高于无CE的合金,这表明CE取代可以增加氢化物的稳定性。 (c)2018年elestvier b.v.保留所有权利。

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