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Influence of Laves phase on microstructure and hydrogen storage properties of Ti-Cr-V based alloy

机译:Laves相对Ti-Cr-V基合金组织和储氢性能的影响

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摘要

Composites of Ti2CrV as the main matrix and ZrFe1.8V0.2 as the secondary matrix were prepared by two stage arc melting process and their microstructural characteristics as well as the hydrogen storage properties were investigated. X-ray diffraction (XRD) study reveals the presence of secondary phase. Electron Probe Micro Analysis (EPMA) illustrates that with increase in ZrFe1.8V0.2 concentration, the microstructure of the minor phase goes from dots to laminar to dendrites. With rise in the content of secondary phase in main Ti2CrV matrix, hydrogen absorption-desorption plateau pressures increases, and hydrogen storage capacity and plateau slope factor decreases. For all the cases the hydrogen absorption kinetics is found to be satisfactory. In-situ hydrogen desorption study shows that the stability of the hydrides decrease with increasing secondary phase concentration, which is important for practical application. Based on the hydrogen storage property analysis it has been concluded that Ti2CrV + 5% ZrFe1.8V0.2 composite exhibit the best overall performance for hydrogen storage application. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:采用两步电弧熔炼工艺制备了以Ti2CrV为主要基体和ZrFe1.8V0.2为次要基体的复合材料,研究了它们的组织结构和储氢性能。 X射线衍射(XRD)研究表明存在次生相。电子探针微分析(EPMA)表明,随着ZrFe1.8V0.2浓度的增加,次要相的微观结构从点到层流再到树枝状。随着主Ti2CrV基体中次生相含量的增加,氢的吸附-解吸平台压升高,储氢量和平台斜率因子降低。对于所有情况,发现氢吸收动力学是令人满意的。原位氢解吸研究表明,氢化物的稳定性随第二相浓度的增加而降低,这对实际应用很重要。根据储氢性能分析,可以得出结论,Ti2CrV + 5%ZrFe1.8V0.2复合材料表现出最佳的储氢性能。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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