首页> 外文期刊>International journal of hydrogen energy >Effect of heat treatment on microstructure and hydrogen storage properties of mass-produced Ti_(0.85)Zr_(0.13)(Fe_x-V)_(0.56)Mn_(1.47)Ni_(0.05) alloy
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Effect of heat treatment on microstructure and hydrogen storage properties of mass-produced Ti_(0.85)Zr_(0.13)(Fe_x-V)_(0.56)Mn_(1.47)Ni_(0.05) alloy

机译:热处理对量产Ti_(0.85)Zr_(0.13)(Fe_x-V)_(0.56)Mn_(1.47)Ni_(0.05)合金的组织和储氢性能的影响

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摘要

Hydrogen storage as a metal hydride is the most promising alternative because of its relatively large hydrogen storage capacities near room temperature. TiMn_2-based C14 Laves phases alloys are one of the promising hydrogen storage materials with easy activation, good hydriding-dehydriding kinetics, high hydrogen storage capacity and relatively low cost. In this work, multi-component, hyper-stoichiometric TiMn_2based C14 Laves phase alloys were prepared by a vacuum induction melting method for a hydrogen storage tank and electrochemical applications. Since TiMn_2 alloy shows high equilibrium plateau pressure, Ti and Mn were partially replaced by other metallic elements such as Zr, V, and Ni. Since pure vanadium (V) is quite expensive, the substitution of the V element in these alloys has been tried and some interesting results were achieved by replacing V by commercial ferrovanadium, FeV, raw material. XRD pattern and SEM analysis of the as-cast VIM Ti_(0.85)Zr_(0.13)(Fe_x-V)_(0.56Mn_(1.47)Ni_(0.05) alloy revealed that the main phase of the C14 Laves phase and the secondary phase of FeO formed along the grain boundary. Also, the as-cast VIM Ti_(0.85)Zr_(0.13)(Fe_x-V)_(0.56)Mn_(1.47)Ni_(0.05) alloy showed a high plateau pressure slope from measurement of P-C-isotherms, which led to a decrease in reversible hydrogen storage capacity. It was found that a suitable heat treatment was very effective in the formation of the C14 single phase and improving the sloping properties. The improvement of sloping properties was mainly attributed to the strain energy effect and the homogeneity of chemical composition. In this work, hydrogen storage capacity was evaluated by a volumetric method using P-C-isotherms and a gravimetric method using magnetic suspension balance.
机译:作为金属氢化物储氢是最有前途的选择,因为它在室温附近具有相对较大的储氢能力。 TiMn_2基C14 Laves相合金是一种有前途的储氢材料,具有易于活化,良好的氢化-脱水动力学,高储氢能力和相对较低的成本。在这项工作中,通过真空感应熔化法为储氢罐和电化学应用制备了多组分,超化学计量的TiMn_2基C14 Laves相合金。由于TiMn_2合金显示出较高的平衡平台压力,因此Ti和Mn被Zr,V和Ni等其他金属元素部分替代。由于纯钒(V)相当昂贵,因此尝试了在这些合金中替代V元素,并通过用商业钒铁FeV原料替代V获得了一些有趣的结果。铸态VIM Ti_(0.85)Zr_(0.13)(Fe_x-V)_(0.56Mn_(1.47)Ni_(0.05)合金的XRD图谱和SEM分析表明,C14 Laves相的主相和次生相沿着晶界形成的FeO的量。此外,铸造的VIM Ti_(0.85)Zr_(0.13)(Fe_x-V)_(0.56)Mn_(1.47)Ni_(0.05)合金显示出高的平台压力斜率。 PC等温线导致可逆储氢能力的降低,发现合适的热处理对形成C14单相和改善倾斜性能非常有效,倾斜性能的提高主要归因于应变能效应和化学成分的均匀性在这项工作中,储氢容量通过使用PC等温线的体积法和使用磁悬浮天平的重量法进行评估。

著录项

  • 来源
    《International journal of hydrogen energy》 |2013年第14期|6215-6220|共6页
  • 作者单位

    Icheon Branch, Korea Institute of Ceramic Engineering & Technology, Icheon-si, Gyeongi-do, Republic of Korea;

    Icheon Branch, Korea Institute of Ceramic Engineering & Technology, Icheon-si, Gyeongi-do, Republic of Korea;

    Icheon Branch, Korea Institute of Ceramic Engineering & Technology, Icheon-si, Gyeongi-do, Republic of Korea;

    Korea Energy Materials Co. Ltd., Daegu Technopark, Hosan-dong, Dalse-gu, Republic of Korea;

    Department of Chemistry, Dongguk University-Seoul, 100715 Seoul, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hydrogen storage; metal hydride; TiMn_2-based C14 laves phase; vacuum induction melting; heat treatment;

    机译:储氢金属氢化物;TiMn_2基C14 Laves相;真空感应熔炼;热处理;
  • 入库时间 2022-08-18 00:27:47

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