首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influence of annealing treatment on the microstructure and hydrogen storage performance of Ti1.02Cr1.1Mn0.3Fe0.6 alloy for hybrid hydrogen storage application
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Influence of annealing treatment on the microstructure and hydrogen storage performance of Ti1.02Cr1.1Mn0.3Fe0.6 alloy for hybrid hydrogen storage application

机译:退火处理对混合储氢应用Ti1.02Cr1.1Mn0.3Fe0.6合金组织和储氢性能的影响

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摘要

The as-cast Ti1.02Cr1.1Mn0.3Fe0.6 alloy for hybrid hydrogen storage vessel application was annealed at different temperatures (873 K, 973 K, 1123 K, 1173 K) for 2 h, and annealed at 1123 K for different time (2, 5, 8 h) respectively, and their microstructure and hydrogen storage properties were investigated systematically. The results show that the as-cast alloy has a single C14 Laves phase, and all annealed alloys consist of a C14 Laves main phase and a secondary phase. After annealing at different temperatures for 2 h, the hydrogen absorption pressure at 298 K decreases, however, the maximum hydrogen storage capacity and desorption pressures at 318 K decrease slightly too. As the annealing time extends, the hydrogen absorption plateau pressure at 298 K and hydrogen desorption plateau pressure at 318 K increase, and the hydrogen desorption capacity increases first and then decreases, which reaches the highest desorption capacity of 1.721 wt.% at the annealing time of 5 h. Among the studied alloys, the alloy annealed at 1123 K for 5 h has the best overall properties for hybrid hydrogen storage application, its hydrogen absorption plateau at 298 K is 29.09 MPa, its hydrogen desorption plateau pressure at 318 K is 45.12 MPa, its hydrogen storage capacity is 1.721 wt.% and its dissociation enthalpy (Delta H-d) is 17.78 kJ/mol H-2. (C) 2015 Elsevier B.V. All rights reserved.
机译:用于混合储氢容器的铸态Ti1.02Cr1.1Mn0.3Fe0.6合金在不同温度(873 K,973 K,1123 K,1173 K)下退火2小时,并在1123 K下退火不同时间。分别考察了(2、5、8 h)的微观结构和储氢性能。结果表明,铸态合金具有单一的C14 Laves相,并且所有退火合金均由C14 Laves主相和第二相组成。在不同温度下退火2小时后,在298 K下的氢吸收压力降低,但是,在318 K下的最大储氢容量和解吸压力也略有降低。随着退火时间的延长,在298 K处的氢吸收平稳压力和在318 K处的氢解吸平稳压力先增加,然后氢解吸能力先增加然后减小,在退火时达到最高解吸能力1.721 wt。% 5小时在所研究的合金中,以1123 K退火5 h的合金具有最佳的综合性能,可用于混合储氢,其在298 K时的氢吸收平台为29.09 MPa,在318 K时的氢解吸平台压力为45.12 MPa,其氢储存容量为1.721重量%,其解离焓(ΔHd)为17.78kJ / mol H-2。 (C)2015 Elsevier B.V.保留所有权利。

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