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Effect of Mn, Ti/Cr ratio, and heat treatment on hydrogen storage properties of TI-V-CR-MN alloys

机译:Mn,Ti / Cr比和热处理对TI-V-CR-MN合金储氢性能的影响

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摘要

This study elucidates the effects of adding Mn, the Ti/Cr ratio, and high-temperature annealing on the hydrogen absorption-desorption properties of Ti-V-Cr-Mn body-centered cubic alloys. The hydrogen storage properties of alloys are also modified by integrating the positive effects. X-ray diffraction analysis indicates that the lattice parameters decrease linearly with an increasing Mn content. Additionally, the reversible hydrogen desorption capacity is increased as the Mn content is increased from 0 at.% to 15 at.%, without apparently degrading hydrogen absorption capacities. Despite increasing the desorption pressure, the decrease of Ti/Cr ratio slightly reduces the absorption and desorption capacities. The Ti _(33)V _(33)Cr _(19)Mn _(15) alloy has a reversible hydrogen desorption capacity as high as 2.48 mass% at 80°C. Moreover, the as-heat-treated (1200°C, 10 h) Ti _(31)V _(33)Cr _(21)Mn _(15) alloy has a flatter plateau pressure and a higher amount of desorption pressure (greater than 1 atm) than those of the as-cast alloy.
机译:这项研究阐明了添加Mn,Ti / Cr比和高温退火对Ti-V-Cr-Mn体心立方合金的氢吸收-解吸性能的影响。合金的储氢性能也可以通过综合积极作用而得到改善。 X射线衍射分析表明,晶格参数随Mn含量的增加而线性降低。另外,当Mn含量从0原子%增加到15原子%时,可逆氢解吸能力增加,而氢吸收能力没有明显降低。尽管增加了解吸压力,但Ti / Cr比的降低会稍微降低吸收和解吸能力。 Ti _(33)V _(33)Cr _(19)Mn _(15)合金在80°C时具有高达2.48质量%的可逆氢解吸容量。此外,经热处理(1200°C,10 h)的Ti _(31)V _(33)Cr _(21)Mn _(15)合金的平台压力更平坦,而解吸压力更高(大于1 atm)。

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